Absorption, H, by Pd, a |
154, 157 |
Acetalisation, by Rh(III)triphos complexes, a |
44 |
Acetals, activation, a |
111 |
Acetone Oxime, carbonylation, a |
163 |
Acetonine, synthesis, a |
163 |
Acetophenone,a |
44, 239 |
Acetylene, reactions, a |
40, 159, 163, 236 |
Adsorption, by IrOx/Ti electrodes, a |
157 |
CO, onIr/Al203, a |
42 |
on Pt electrode, effects, a |
102 |
on Pt-Rh/Al2O3, a |
159 |
on Pt( 100},reaction monitoring |
188 |
on Rh catalysts, a |
41 |
H, by Pd/glassy C electrodes, a |
157 |
AIROF,a |
113 |
Alcohols, allyl, cyclopentannulation, a |
110 |
allylic, for enol production, a |
111 |
cinnamyl, hydrogenation, a |
40 |
C7, from syngas reaction, a |
159 |
ethyl, chemisorption on Pt, Pd, Rh, Ru, |
|
bonding study, a |
38 |
flow rate sensor, a |
106 |
from α -alkene hydroformylation, a |
43 |
methyl, chemisorption on Pt, Pd, Rh, Ru, |
|
bonding study, a |
38 |
electrooxidation, on Pt, a |
35, 108, 157, 232 |
on RuO/C, a |
36 |
extensive use in fuel cells, Grove Symp. |
209 |
formation, from CO hydrogenation, a |
237 |
synthesis from syngas, a |
41 |
phthalic, electrooxidation, a |
111 |
primary, aerobic oxidation, a |
163 |
allylation, a |
111 |
synthesis from CO+H2, a |
42, 109 |
Aldehydes, activation, a |
111 |
formation by hydroformylation, a |
43, 239 |
Alkanes, bridged polycyclic, by RuO4, a |
45 |
dehydrogenation, a |
159, 239 |
production |
152, 161, 195 |
Alkenes, hydrogenation, homogeneous, a |
161, 162 |
reactions, a |
161, 163, 238, 239 |
hydroformylation, a |
43, 239 |
Alkenyl Iodonium Salt, coupling with olefins, a |
238 |
Alkylation, asymmetric Pd allylic, a |
161 |
Alkylation-Alder Ene, cyclisation, a |
110 |
Alkylthiols, formation, a |
152 |
Alkyl-Boron Compounds, polymerisation, a |
43 |
Alkynes, 1-Alkynes, reactions, a |
44, 111, 161, 162 |
Allenes, carbopalladation, a |
44 |
Allyl Benzene, hydroformylation, a |
110 |
Allylation, primary alcohols, a |
111 |
Allylic Acetates, for α, β -unsaturated ketones, a |
111 |
Allylsilanes, synthesis, a |
162 |
Aluminium, grain boundary reaction with |
|
Pd-Ag-Cu, a |
153 |
Amines, carbonylation |
70 |
Ammonia, carbonylation |
70 |
for HCN synthesis, a |
160 |
in nitric acid production, a |
236 |
oxidation, on knitted gauze |
58 |
photoproduction, from N2, by Pt/CdS system, a |
104 |
reaction with CO, a |
108 |
sensor |
200 |
Amorphisation, on milling Pd-Si, a |
154 |
platinum metals, solid state |
83 |
Aniline, for diphenylurea, a |
238 |
Anion, tandem capture-cyclisation, by Pd(0), a |
161 |
Annulation, by Pd catalyst, a |
110 |
Aromatisation,n -heptane, n -hexane, a |
39, 40, 107 |
Aryl Halides, carbonylation |
70 |
Aryl Iodides, coupling, a |
237 |
reaction with vinyl-, cyclopropane/butane, a |
43 |
Aryldithiocarbamates,a |
237 |
Aryl-Aryl, exchange, a |
238 |
Ascorbic Acid, oxidation, by Ru complexes, a |
233 |
Barrier Layers,a |
45, 46, 112, 113, 164, 240 |
Benzene, formation, a |
160, 236 |
Benzonitrile, electrocatalytic hydrogenation, a |
103 |
Bismuth, effect on lactose oxidation, a |
40 |
Bonding, fusion, a |
235 |
Book Reviews, Precious Metals Science |
|
and Technology |
93 |
The Platinum Yearbook 1991 |
137 |
“Platinum 1991” |
132 |
Bushveld Igneous Complex |
132 |
Butane,n -, hydrogenolysis, isomerisation, on Pt, a |
235 |
Butanediols, electrooxidation, a |
111 |
Cameras, IR |
45, 64 |
Cancer, anti-tumour Pt complex, a |
46 |
metal complex anti-cancer drugs, review, a |
46 |
Capacitors, with Pt/Ta barrier layers, a |
112 |
Carboannulation, vinylic cyclopropanes, |
|
cyclobutanes, a |
43 |
Carbon Oxides, CO, adsorption, on Ir/Al2O3, a |
42 |
on Pt. Rh, Pt-Rh catalysts, a |
159 |
on Rh(I). Rh(I)/TiO2, a |
41 |
chemisorption, on Pt-Sn/Al2O3. a |
107 |
on Pt/Al2O3, TiO2, a |
235 |
CO-NO, Ce, K effects on Rh/Al2O3, a |
41 |
cycling, for Pd/Al2O3 restructuring, a |
40 |
detection in presence of NO, SO2, a |
235 |
effect on ethene hydrogenation, a |
107 |
on H permeation through Pd, a |
32 |
electrooxidation, see Electrodes |
|
for aromatic nitro compound reduction, a |
162 |
for diphenylurea, a |
238 |
hydrogenation, on Rh catalysts, a |
109, 160, 237 |
on Ru clusters/inorganic oxides, a |
42 |
interaction with O, on Ir/Al2O3, a |
42 |
on Rh/Al2O3, displacement by PH3. a |
109 |
oxidation, on Pt/SnO2, a |
107 |
on PdCl2-CuCl2/AI2O3,C, a |
109 |
poisoning on Pd/SiO2, characterisation, a |
41 |
reaction with NH3, a |
108 |
see also Synthesis Gas |
|
self poisoning on Pt{100} surfaces |
188 |
sensors, a |
38, 106, 158 |
CO, CO2, hydrogenation. high pressure, a |
40 |
low fuel cell emissions. Grove Symp. |
209 |
CO2, effects on H permeation through Pd. a |
32 |
hydrogenation, on Rh/TiO 2 , Rh/Nb2O3, a |
41 |
Carbon Tetrachloride, hydrodechlorination. a |
43 |
Carbonitriles,α -methoxy. formation, a |
111 |
Carbonylation, reactions, a |
43, 161, 163 |
by Ru carbonyl complexes |
70 |
Carbopalladation, allenes. a |
44 |
Carboxylic Acids, reactions, a |
43. 111 |
Carboxylicα -Amino Acids, synthesis, a |
161 |
Catalysis, biphasic, a |
162 |
by cluster compounds |
10 |
by Ru carbonyls |
70 |
heterogeneous, a |
39–42, 106–110, 159–160, 235–237 |
homogeneous, a |
42–45, 110–112, 161–163.237–239 |
three-way, SAE conference |
94 |
Catalysts, EUROPT-1, for CH4 conversion |
195 |
for diesel engines |
178. 187 |
Iridium, wire, for HCN synthesis, a |
160 |
Iridium Complex, stabilised by O donor |
|
ligand, hydrosilylation, a |
44 |
Ir/Al2O3, CO+O2 adsorption, interactions, a |
42 |
Ir/support, precursor stoichiometry, a |
107 |
Osmium Complex, OsHCl(CO)(P’Pr3)2, |
|
hydrosilylations, a |
162 |
[H 2 Os3 (CO)9]1/poly -naphthalene, olefin |
|
isomerisation, a |
111 |
Palladium Complexes, Pd acetate + di-imine |
|
ligands, vinylations, a |
43 |
PdCl2(dppf), polymerisations, a |
43 |
PdCl2 (PhCN) 2, aryldithiocarbonimidate |
|
rearrangement, a |
237 |
PdCl2(Ph3P)2, styrene |
|
hydrocarboxylation, a |
161 |
PdCl2/Ph2PC6H4SO3Na, heptene |
|
hydrocarboxylation, a |
238 |
Pd(0), tandem cyclisation-anion capture, a |
161 |
alkylation of allyl substrate, a |
110 |
Pd(0)Ln+vinylic/arylic halides, |
|
carbopalladations, a |
AA |
Pd(II), Alder ene reaction, a |
110 |
Pd(II) acetate, carbo-, heteroannulation, a |
43 |
Pd(II), alkyne-cyclopalladations, a |
111 |
Pd(II)+onium salts+triphenylphosphine, |
|
for diphenylurea, a |
238 |
Pd(OAc)2, β -vinylation, a |
161 |
C-C coupling, a |
238 |
Pd(OAc)2, H2+CC14 reaction, a |
43 |
Pd(OAc)+2, Pd(PPh3)4, PdCl2, coupling |
|
reactions, a |
237 |
Pd(OAc)2(PPh3),+Cu iodide, vinyl |
|
triflate reactions, a |
238 |
Pd(OAc)2+( + )DIOP. asymmetric |
|
alkylations, a |
161 |
Pd(O2CC2H5)2, mild CH4 oxidation |
126 |
Pd(PFu3)2Cl2, cyclohexenone annulation. a |
238 |
Pd(PPh3)2(C6H4-p -CH3)I. aryl-aryl |
|
exchange, a |
238 |
Pd2(dba)3,CHCI3, coupling reactions, a |
161 |
(DlAN)Pd(olefin), hydrogenations. a |
161 |
[Pd(pyridine. phosphine)l(BF4)2, |
|
dimerisations, a |
110 |
[(dppp)Pd(solvent)2][X]2, carbonylations. a |
161 |
Palladium, industrial uses, review, a |
44 |
poisoning by metal ions, a |
108 |
Pd, Pd-Pt, Pd-Rh/C, SiO2, TiO2, propylene |
|
oxidation, a |
160 |
PdCl2, PdCl2,-CuCl2,/Al2O3, CO oxidation, a |
109 |
PdCl2+ Keggin-type heteropoly anions, reductive |
|
carbonylation. a |
43 |
PdCl2/CuCl2/HOAc, propylene oxidation, u |
43 |
PdS/Al2O3, hexene-1 hydrogenation. a |
159 |
Pd(111), sulphided. C2H2 cyclisation. a |
236 |
Pd(Pt)/Al2O3, S poisoning, a |
108 |
Pd-Bi/C, lactose oxidation, a |
40 |
Pd/AlPO4, styrene hydrogenation. a |
159 |
Pd/Al2O3, CH4 oxidation/combustion, a |
108 |
CO-NH3 reaction, a |
108 |
surface restructuring on CO cycling. a |
40 |
Pd/Al2O3-SiO2+Na, Fe, Mn oxides, |
|
preparation, structure, properties, a |
108 |
Pd/a-AI,0,, C,H, hydrogenation. a |
236 |
Pd/C, reaction of pyrimidine nucleosides+ |
|
vinyl/allylic triflates. a |
160 |
Pd/F-polymer Nafion, olefin conversion, a |
106 |
Pd/HY, pretreatment, Cr promoter effects, a |
109 |
Pd/HY, /NaHY, /NaY, methylcyclopentane |
|
conversions, a |
160 |
Pd/La2O3, in high pressure IR cell. |
|
hydrogenation. a |
40 |
Pd/MgO, phenol hydrogenation. a |
236 |
Pd/NaY, /CaY zeolites, HC conversions, a |
160 |
Pd/PTFE/Nafion, cyclohexene hydrogenation. a 106 |
|
Pd/rare earth oxide, support effects, a |
109 |
Pd/SAPO-11,1-hexene conversion, a |
40 |
Pd/SiO2 characterisation. MCP |
|
hydrogenolysis. a |
41 |
promoted. MeOH synthesis, a |
41 |
Pd/support, H combustion, a |
160 |
Pd/γ -Al2O3, C2H2-C2H4 hydrogenation. a |
40 |
Platinum Complexes, bis(divinyltetramethyl- |
|
disiloxane)Pt. colloid formation, a |
110 |
Pt blues. H2 evolution, a |
43 |
PtX2(CO)(C6H10), synthesis, a |
237 |
[Pt(C2H4)(( + )-DIOP) + PtCl2(( + )-DIOP)]. |
|
hydroformylation. a |
42 |
Pt(II)-NaI-HC1O4-H2O, vinyl halogcnidc |
|
reduction, a |
161 |
Pt-H.+Ph2Si(C = CCMe3)2, ring systems, |
|
alkenyl silanes, a |
42 |
with phosphinito ligands. hydroformylation. |
a 43 |
cis -lPtCl2(PPh3O2,1/SnCl2, olefin |
|
hydroformylation, a |
110 |
Platinum, diolefin(dialkyl)Ptdl) hydrogenation. |
a 236 |
in nitric acid production, a |
236 |
Pt, Pd, Rh, Ir, acetylene hydrogenation, |
|
C effects, |
159 |
Pt black, for Pt complex hydrogenation |
236 |
Pt clusters/chelate resin-Na, Mg, Al |
|
complexes, preparation, a |
40 |
Pt oxides/TiO2, CdS, aqueous photocatalytic |
|
cyclisation, a |
36 |
Pt planes, olefin hydrogenation, a |
159 |
Pt(111), CH3I, CO coadsorption, a |
235 |
Pt-Au colloids, H2photoevolution |
22 |
Pt-Ce/SiO2, microstructure, reactivity, a |
108 |
Pt-Co/C, O electroreduction, a |
103 |
Pt-Ga/Al2O3,n -hexane conversion, a |
39 |
Pt-Ir/Al2O3,n -heptane aromatisation, a |
107 |
Pt-Ir/Al20,, -T102, /TiOj, support effects, a |
236 |
Pt-Ir/support, precursor stoichiometry, a |
107 |
Pt-Ni-Nb-Sn-Pt, HCHO electrooxidation, a |
157 |
Pt-Re-S/Al2O3-Cl, reforming reactions, a |
39 |
Pt-Re/Al2O3, dehydrogenation, preparation, a |
107 |
Pt-Sn/Al2O3, chemisorption, XPS, a |
107 |
n -heptane aromatisation, a |
107 |
[PtCl2 (SnCl3) 2]2 –/γ— Al2 O3, alkane dehydrogenation, a |
159 |
Pt/, Pt-Rh/Al2O3, CO adsorption, a |
159 |
Pt/Al2O3, cinchona-modified, ligand-accelerated catalysis, a |
39 |
ethene hydrogenation, CO effects, a |
107 |
S poisoning, SMSI, a |
235 |
Pt/Al2O3, pillared clay, hydrocracking, |
|
isomerisations, a |
159 |
Pt/AI2O3-Cl, deactivation on coking, a |
235 |
Pt/C, H oxidation, a |
232 |
Pt/F-polymer Nafion, olefin conversion, a |
106 |
Pt/H-mordenite,n -heptane hydroconversion, a |
107 |
Pt/KL,n -hexane aromatisation, a |
40 |
Pt/nylon, Sn-Pt/nylon, liquid-phase hydrogenation, a |
40 |
Pt/Pr6O+1 1, alcohol production, from syngas, a |
159 |
Pt/PTFE/Nafion, cyclohexene hydrogenation, a |
106 |
Pt/Rh, low-level moisture generation, a |
106 |
Pt/SnO2/SiO2, CO low temperature oxidation, al07 |
|
Pt/support, precursor stoichiometry, a |
107 |
Pt/TiO2, H photoevolution from H2O-MeOH, a |
233 |
resistance to H2S, a |
39 |
S poisoning, SMSI, a |
235 |
Pt/TiO2-ZrO2,n -hexane reforming, a |
236 |
Pt/ZrO2, polycrystalline, MeOH oxidation, a |
108 |
Rhodium, chiral cationic water soluble |
|
complexes/cation exchange resins, a |
42 |
Rh colloids, hydrosilylation, a |
238 |
Rh/RC(p -C6H4SO3Na)3, alkene |
|
hydrogenation, a |
239 |
wire, HCN synthesis, a |
160 |
Rhodium Complexes, asymmetric |
|
hydrosilylation, a |
239 |
BINAP-Rh(I), photocatalytic asymmetric |
|
reduction, a |
37 |
Cp*(P(OMe)3)Rh(C2H4)(H)+, |
|
dimerisations, a |
162 |
Rh chiral phosphine ligands, asymmetric |
|
hydrogenolysis, a |
162 |
Rh chiral/3-alkyl phenanthroline, |
|
hydrogenation, a |
44 |
Rh phosphine chelate complexes, |
|
reductions, a |
162 |
RhCl(CO)(PR3)2, pentane |
|
dehydrogenation, a |
158 |
RhPh2PPy, styrene hydroformylation, a |
239 |
Rh(II) carboxamides, preparation, |
|
cyclopropanation, a |
111 |
Rh(II)perfluorobutyrate, hydrosilylation, a |
162 |
Rh(PMe3)2Cl(CO), alkane |
|
dehydrogenation, a |
239 |
Rh(+)/DIOP, alkene hydroboration, a |
238 |
Rh-phosphine, hydroformylation, a |
44 |
Rh-tris(o -tert -bufyl-p -methylphenyl)phosphite, |
|
hydroformylation, a |
239 |
Rh6(CO)16 +amine, nitroanisole, |
|
nitrotoluene reduction, a |
239 |
tricyclohexylphosphine Rh(H)Cl2, |
|
chloroarene hydrogenolysis, a |
162 |
[RhCl3(triphos)], acetalisations, a |
44 |
[Rh(COD)Cl]2 (S)-phephos, asymmetric |
|
hydrosilylation, a |
44 |
[Rh(COD)Cl]2 +TMS–CN, acetyl reaction, al 11 |
|
[Rh(CO)2Cl]2 +phosphanorbornadiene, |
|
hydroformylations, a |
162 |
[Rh(diphosphine)(solvent)2]+, enol |
|
production, a |
111 |
Rh(0) colloidal particles, hydrogenation, a |
162 |
Rh(I), Rh(I)/TiO2, CO adsorption, 1-hexene |
|
hydrogenation, a |
41 |
Rh-Ag/TiOj, MCP hydrogenolysis, a |
41 |
Rh-Ce/SiO2, microstructure, reactivity, a |
108 |
Rh-Co-Cu/TiO2, H2 +CO reaction, a |
42 |
Rh-Co/Al2O+3, MgO, SiO2, propylene |
|
hydroformylation, a |
237 |
Rh-Mn/SiO2, CO hydrogenation, a |
109 |
Rh/Al2O3, CO adsorption, a |
159 |
CO displacement by PH3 a |
109 |
ethene hydrogenation, CO effects, a |
107 |
in solar reactor, a |
37 |
interaction with N2, a |
155 |
protection from oxidative degradation, a |
109 |
Rh/Al2O3 +Ce, K, NO-CO reaction, a |
41 |
RI1/Al2O3-K2CO3, exchange functionalisation 140 |
|
Rh/γ -Al2O3 ZrO2, ZnO, MgO, |
|
characterisation, a |
237 |
Rh/MgO, for H/CO reaction, a |
237 |
Rh/Nb2O5, CO2, hydrogenation, a |
41 |
Rh/SiO2, NCO formation, a |
41 |
Rh/TiO2, CO2 hydrogenation, a |
41 |
[HRh(CO)(PPh3)] /membrane, |
|
hydroformylations, a |
109 |
Rh4(CO)12/TiO2, CO hydrogenation, a |
160 |
Ruthenium, chiral, synthesis, a |
111 |
Ru dusters/inorganic oxides, preparation |
|
from Ru3(CO)12, a |
42 |
RuO4, C-H bond activation in alkanes, a |
45 |
Ruthenium Complexes, K[Ru(EDTA-H)Cl]2H2O, |
|
NH3 photoproduction, a |
104 |
RuCl(OAc)(PPh3)3 triple system, |
|
aerobic oxidation, a |
163 |
RuCl2(PPh3)3 +NaOH, ketone |
|
hydrogenation, a |
239 |
RuCl3.3H2O, naphthalene |
|
electrooxidation, a |
233 |
RuHI(tppts)3, propionaldehyde |
|
hydrogenation, a |
112 |
RuX2L4, ether oxygenation, a |
45 |
Ru(acac)3 , for naphthalene |
|
electrooxidation, a |
233 |
Ru(cod)(cot), codimerisation, a |
163 |
Ru(NH4)2Cl6, for naphthalene |
|
electrooxidation, a |
233 |
Ru2(CO)4 carboxylates, hydrogenation, a 163 |
|
Ru3(CO)12 +tricyclohexylphosphine, |
|
alkene hydroformylation, a |
239 |
decarbonylation, a |
163 |
lRuBr2(Me2SO)3], PPh3 oxidation, a |
163 |
[Ru2 (CO)4 (Me2 CNO)2 (Me2 CNOH)2], |
|
carbonylation, a |
163 |
[(bpy)(trpy)RuO]2 +, diol oxidations, a |
111 |
[(Ph3P)2N][H3Ru4(CO)1 2], for |
|
cyclohex-2-en-l-one, a |
45 |
Ru-Co/CeO2, H-CO reaction, a |
160 |
Ru-Ge, Pb, Sb, Si, Sn/Al2O3, dispersed, |
|
properties, a |
110 |
Ru/C, quinoline hydrogenation, a |
110 |
Ru/SiO2, C3H6 hydroformylation, a |
237 |
Ru/zeolite-A, preparation, size effect, a |
42 |
Ru3(CO)1 2 +bpy/Mg silicate, water gas |
|
shift reaction, a |
110 |
(( -Allylruthenium, for ketone synthesis, a |
111 |
Catecholborane, for alkene hydroboration, a |
238 |
Ceramics, support for Pd-Ag membrane, for |
|
H permeation, a |
154 |
Cerium, additions to Rh/Al2O3, NO-CO reaction, a |
41 |
Chemical Reaction Fronts on Pt(100| |
188 |
Chemical Vapour Deposition,a |
38. 152 |
Chemisorption, CO, H, O |
107, 235 |
CO, MeOH, EtOH, on electrodes, a |
38 |
Chenevix, Richard, palladium discovery |
141 |
Chloroarenes, hydrogenolysis, a |
162 |
Chloroform, formation, a |
43 |
Chloronitrobenzenes, reduction, a |
162 |
Chloroperbenzoic Acid, reaction with |
|
[Ru(PPh3)3Cl2], a |
45 |
Cholesterol, sensor, a |
165 |
CHP Systems, Grove Symp. |
209 |
Chromium, catalyst promoter, a |
109 |
for corrosion protection, a |
163 |
grain boundary reaction with Pd-Ag-Cu, a |
153 |
Cinnamaldehyde, hydrogenation, a |
40 |
Cisplatin,a |
46 |
Clusters, complexes, a |
156 |
polymetallic activation |
10 |
Coal, conversion, a |
112 |
Coatings, IrO2-Ta2O5/base metal electrodes, a |
157 |
Pd, by electroless deposition, a |
105 |
on Mo-W-Cr alloys |
133 |
Pd modified aluminide |
82 |
Pt, by electroless deposition, a |
105 |
Pt thin films, ion beam deposited, a |
112 |
Rh, in reed switches, a |
165 |
Cobalt,a |
153 |
Codimerisation, acetylenes+alkenes, a |
163 |
Coking, in catalysts, a |
235 |
Colloids, Pt, Pt-Au, Rh, Ru, Ag, a |
22, 34, 110, 238, 239 |
Composites, superconducting |
2 |
Conductors, molecular, [Pd(tmp)] 2 [ReO4], a |
156 |
Conferences,12th Natl. Fuel Cell Seminar, 1990 |
17 |
2nd Grove Fuel Cell Symp., London, 1991 |
209 |
2nd Intl. Symp. Metal-H Systems, Banff, Sept. 1990 |
24, 195 |
Intl. Symp. Polymetallic Activation, Palma, Sept. 1990 |
10 |
Magneto-Optic Recording International Symposium, Tokyo, 1991 |
134 |
SAE Intl. Congress and Exposition, Detroit, Feb.-Mar. 1991 |
94 |
Corrosion, in contracts, a |
165 |
photo-, CdS in Pt/CdS dispersions, a |
104 |
protection, in Mo-W-Cr-Pd alloys |
133 |
resistance, Cr+PGM additives in acids, a |
163 |
F ion on IrO/TiO ceramic electrode, a |
35 |
Fe40Cr3Ru steel, a |
34 |
of Ir-Ni electrodes, for OER, a |
106 |
platinised porous Ti electrodes, a |
35 |
Crucibles, Ir, Pt |
2, 23, 156 |
Crystallisation, heavy metal fluoride glass, a |
164 |
Crystals, Pd-Ni-P, a |
102 |
Pt basal single electrodes, a |
34 |
Pt complex oxides, formed in crucibles, a |
156 |
Rh-Cu single, solidification, a |
155 |
RuSe2, a |
155 |
single, Ir, plastic deformation |
196 |
single, Pt, Rh, Pd, surfaces, in H2SO4, a |
228 |
Y44Ru25, Er3Ru2, a |
34 |
n -Si, Pt doped, a |
228 |
Cyclic Voltammetry, for Ru-Ti alloys, a |
103 |
Cyclisation, reactions, a |
36, 161, 160 |
Cyclohexane, reactions |
27, 39, 160 |
Cyclohexanpne,a |
36, 236 |
Cyclohexene, reactions |
74, 106, 110 |
Cyclohexenone, annulation, a |
238 |
Cyclohexylamine, carbonylation |
70 |
Cyclopentene, hydroformylation, a |
110 |
Cyclopropanation, catalysts for, a |
111 |
Cyclopropane, reaction, on RuNaA[ZS], a |
42 |
Cyclo-2-en-l-one, reactions, a |
45 |
Decarbonylation,(Ir6(CO)16] isomers, a |
237 |
Decomposition, formamide, a |
108 |
hydrazine, a |
155 |
NO, on Pt{ 100} |
188 |
Dehydroaminoacid, derivatives, hydrogenation asymmetric, a |
42 |
Dehydrogenation, alkanes, a |
159, 239 |
cyclic C5, C6 hydrocarbons, a |
107 |
pentane, a |
158 |
Dental, alloys, tarnishing tests, a |
46 |
Detectors, alcohol, with RuO2/C electrode, a |
106 |
ammonia |
200 |
cholesterol, a |
165 |
CO, in presence of NO, SO2, a |
235 |
CO, a |
38, 106 |
H |
85, 106, 234, 235, 240 |
H, O, Pd/SnO2 model sensor, a |
106 |
IR, visible, UV, by Schottky diodes, a |
164 |
IR, a |
45, 64, 208 |
laser power, a |
158 |
luminescent, using Ru complexes, a |
105 |
O, CH4, H2, O2, by Pd/SnO2, Pt/TiO2, a |
158 |
O2, a |
38, 106, 158 |
strain gauges |
65 |
titration monitor, by Ir oxide device |
137 |
Deuterium, enriched by T in giant Pd cluster, a |
230 |
in self assembly of catalysts, a |
236 |
Deuterium Exchange, in styrene, a |
161 |
Dienes, reactions, a |
40, 44, 107, 159, 237 |
synthesis, a |
161, 163 |
Diesel Engines, emission control |
94, 178, 187 |
Royal Commission on exhaust control |
187 |
Diffusion, H, in Pd-Ag, α -Pd, PdSiH alloys, a |
103, 153, 230 |
Ir dimers, Ir adatoms, on Ir(l 10), a |
155 |
membranes |
33, 138 |
see also Permeability |
33, 138 |
Diffusion Couples, Pd-AI, kinetics, a |
32 |
Dihydrobenzofurans, production, a |
43 |
Dimerisation, reactions, a |
110, 162 |
Dimethyl Oxalate, selective reduction, a |
163 |
Diodes, Pt-Ti/p -InGaAs/n -InP, hole trap levels, a |
46 |
Diols, electrooxidation, a |
111 |
Dioxetane, 1,2-, decomposition, chemiluminescence, a |
233 |
Diphenylsilane, for hydrosilylations, a |
239 |
Diphenylurea, N,N′-, synthesis, a |
238 |
Disproportionation, cyclohex-2-en-1-one, a |
45 |
Dissociation, NO, a |
155 |
DNA, photo chemical cleavage, a |
105 |
Electrical Contacts, Al-Pd-Si interconnects, a |
113 |
Au flashed Pd, a |
165 |
corrosion, resistance characteristics, a |
165 |
electroplated Ni/PdNi/Au, a |
234 |
in reed switches, a |
165 |
in ULSI, a |
240 |
ohmic, Pd-In/n -GaAs, Pd/Sb(Mn)p -GaAs, a |
165 |
Pt/Ti/p -InAs, a |
46 |
PtSi/Ge-Si/Si, a |
112 |
Pt-Ti/p -InGaAs/n -InP, diodes, a |
46 |
Schottky, a |
234 |
Electrical Resistivity, in Fe-C/Al2O3/Fe-Ru, a |
231 |
Pd solid solution alloys, +H, a |
33 |
U-Pt/Pd/Rh-In alloys, a |
32 |
Electricity, efficient generation by fuel cells |
209 |
photoproduction from light, a |
37 |
Electrochemical Cells, Pt/CaF2/Pt, in O2, a |
102 |
Electrochemistry,a |
34-36, 102-104, 157–158, 232–233 |
Electrochromism, AIROFs, a |
113 |
Electrodeposition, Pd-Ni films |
208 |
Electrodeposition,a |
38, 105, 106, 234 |
Electrodes, anodes, DSA, a |
95, 105 |
Pt, urea oxidation, a |
35 |
Pt/porous SiC + H3PO4, coal conversion, a |
112 |
cathodes, high temperature, |
|
Pt + (Bi2O3)0.7(Er2O3)0. 3, a |
233 |
Pd thin film disc, H insertion, a |
157 |
Pt, Pt/Nafion/PE, in O sensor, a |
38, 158 |
F ion-IrO/TiO ceramic, effluent treatment, a |
35 |
for OER, preparation, a |
106 |
gas diffusion, Pt, uranous nitrate production, a |
164 |
Ir oxide, in titration monitor |
137 |
IrO2-Ta205/Ta, /Ti, a |
157 |
IrOx/Ti, adsorption properties, a |
157 |
Ir-Pt/Nafion, 117/Pt-Ir, in HC1 electrolysis, a |
35 |
IrxTi, –x02/Ti, preparation, activity, stability, a |
36 |
Pd, implantated by K, Li, a |
103 |
Pd, Pt-Pd, for ethylene glycol oxidation, a |
103 |
photo, Pt-InP, etched, a |
104 |
TiO2/SiO2/Pt, response to gases, a |
36 |
ultramicro, TiO2/SiO2/Pt, gas response, a |
36 |
platinised porous Ti, corrosion resistance, a |
35 |
platinised Pt, in cholesterol oxidase sensor, a |
165 |
polymer/polymer/Pt, preparation, a |
35 |
Pt, adsorbed CO effect, a |
102 |
basal single crystal, a |
34 |
CO electrooxidation, a |
232 |
for glucose oxidation, a |
232 |
in cell with Ru naphthalene oxidation, a |
233 |
in O sensor, a |
158 |
in phenol oxidation, waste water control, a |
232 |
porous in Pt/CaF2/Pt cell, a |
102 |
Pt, Pd, Rh, Ru, chemisorption of CO, |
|
MeOH, EtOH, bonding study, a |
38 |
Pt, Pt/C+metal oxides, MeOH oxidation, a |
35, 232 |
Pt black, Pt/WO3, for H detection, a |
38 |
Pt disk fabrication, a |
234 |
Pt gauze, trans -[PtHCl(PEt3)2l oxidation, a |
35 |
Pt, Pd, Rh, Ru/poly(pyrrole-viologen)/glassy |
|
C felt, for hydrogenations, a |
103 |
Pt rotating disc, for O2 reduction, a |
233 |
Pt(bpy)(CN) 2/Pt, spectrochemical properties, a |
233 |
Pt-SPE membrane, in fuel cell, a |
163 |
Pt/C, for H oxidation, support porosity, a |
232 |
in PEM, a |
240 |
Pt/SnO2, Pt/WO3, in CO sensor, a |
38 |
RuO/C, MeOH oxidation, O evolution, a |
36 |
RuO2+TiO2, SnO2 activated, a |
104 |
RuO2/C, for alcohol detection, a |
106 |
Ru,Ti, –xO2/Ti, catalytic activity, a |
36 |
[RhII(L)2 Cl2]+ BF4–, hydrogenations, H2 evolution, a |
36 |
Electroless Deposition, Pt, Pd, Ni, a |
105 |
Electroless Plating, for Pd thin films, a |
38 |
Electrolysis, HC1, by SPE electrodes, a |
35 |
Emission Control,1991 SAE conference reports |
94 |
diesel exhaust |
178, 187 |
fuel cell benefits, Grove Symp. |
209 |
Energy, more efficient sources, Grove Symp. |
209 |
Enols, catalytic production, a |
111 |
Enones, conjugated, electrocatalytic hydrogenation, a |
103 |
Enthalpy, of formation, RuGe, RhGe, PdGe, a |
154 |
Environment, fuel cell benefits to |
17, 209 |
Enynes, 1,6-, cycloisomerisation, a |
110 |
Esters,a |
45, 161 |
Etching, Pt foils, in O plasma, a |
38 |
Pt-InP photoelectrodes, a |
104 |
Ethane, hydrogenolysis, catalyst activity a |
236 |
Ethene, hydrogenation, a |
107 |
Ethers, luminescence, oxygenation, a |
45, 104 |
Ethyl 2-Formylpropanoate, synthesis, a |
162 |
Ethyl Acrylate, hydroformylation, a |
162 |
Ethyl Chloride, formation, a |
43 |
Ethyl Pyruvate, hydrogenation, a |
39 |
Ethylanthraquinone, 2-, hydrogenation, for Pd catalyst studies, a |
108 |
Ethylbenzene, from styrene, a |
236 |
Ethylene, from vinylhalogenides, a |
161 |
reactions, a |
40, 109, 162, 236 |
Ethylene Glycol, reactions, a |
103, 163 |
Ethyne, effect on ethene hydrogenation, a |
107 |
E.E.C., diesel exhaust control |
178, 187 |
research support |
10 |
Faraday, Michael, history |
222 |
Films, anodic Ir oxide films, charge storage, a |
113 |
Pt, focused ion beam deposition, a |
112 |
Fischer-Tropsch, catalysts, a |
160 |
Fission, PGM waste reprocessing, a |
202 |
Formaldehyde,a |
157. 163 |
Formamide, decomposition, a |
108 |
Formic Acid, electrooxidation, a |
157 |
Fuel Cells,a |
45, 240 |
12th Natl. Fuel Cell Seminar |
17 |
2nd Grove Fuel Cell Symp., London, Sept. 1991 |
21. 209 |
history |
201 |
MeOH, a |
163 |
phosphoric acid, a |
45 |
Fuel Oil, for syngas production, temperature measurement, a |
113 |
Functionalisation, of Rh catalysts, by K |
140 |
Gadolinium Oxide, reaction with Pd+H, a |
154 |
Gauzes, knitted, for NH3 oxidation |
58 |
Geology, British Columbia |
16 |
Pt deposits in USSR |
96 |
Glass, formation, Pd-Ni-P, a |
102 |
Zr-Ba-La-Al-Na fluorides, Pt nucleation, a |
164 |
Glasses, Pd0.835,Sl0.165, structure changes, a |
33 |
Pd40Ni40P20, internal friction, a |
229 |
Pt-Al, thin films |
83 |
Glucose, oxidation, on Pt electrode, a |
232 |
Graphite, oxidation, on Pt{100} |
188 |
Heptane,n -, reactions, a |
39, 107 |
Heptene, -1, hydrocarboxylation, a |
238 |
Heteroannulation, vinylic cyclopropanes, cyclobutanes, a |
43 |
Heterocyclisation, C2H2,a |
236 |
Hexane, isomers, a |
160 |
Hexane,n -, reactions, a |
39, 40, 41, 236 |
Hexene, 1-, reactions, a |
40, 41, 42, 70, 111, 159 |
Hexene,n-, Et3SiH addition, a |
110 |
History, Michael Faraday |
222 |
“Palladium; or, New Silver” |
141 |
Hydrazine, decomposition, a |
155 |
Hydroboration, of alkenes, a |
238 |
Hydrocarbons, adsorption with H2S, H2, on Pt, a |
152 |
conversions, a |
160 |
diesel engine emissions, catalysts for |
178, 187 |
low MW, production from coal, a |
112 |
synthesis from CO + H2, a |
42 |
Hydrocarboxylation, reactions, a |
161, 238 |
Hydrochloric Acid, electrolysis, a |
35 |
Hydrochlorination, olefins, a |
237 |
Hydroconversion,n -heptane, n -nonane, a |
107, 109 |
Hydrocracking,a |
39, 159 |
Hydrocyanic Acid, synthesis, a |
160 |
Hydrodechlorination, CCI4, a |
43 |
Hydroformylation, alkenes, a |
43, 239 |
ethyl acrylate, a |
162 |
ethylene, C3H6, on Rh catalyst, a |
109 |
oct-1-ene, a |
239 |
olefins, a |
110, 162 |
polybutadiene, a |
44 |
propylene, a |
237 |
styrene, 1-hexene, a |
42. 239 |
Hydrogen, absorption, by Pd-Al-La-Ni alloy, a |
154 |
adsorption states on Pt electrodes, a |
34 |
catalytic recombination with O, for moisture generator, a |
106 |
chemisorption, a |
107, 157, 235 |
coadsorption with H2S, HC, on Pt, a |
152 |
codeposited with Pd plating, a |
106 |
detection with CO sensor, a |
38 |
diffusion, in Pd, Pd alloys, a |
33, 103, 153, 230 |
electrooxidation, on Pt/C, a |
232 |
embrittlement of steel, Pt implanted, a |
228 |
evolution, by RhIII complex polymers, a |
36 |
from H2O-MeOH, a |
233 |
on silicides, a |
35 |
from H2O photoreduction, by Pt blues, a |
43 |
in Pd |
24, 33 |
in uranous nitrate production, a |
164 |
insertion into Pd disc cathodes, a |
157 |
metal systems |
195 |
oxidation, on Pd/support, a |
160 |
permeation, through Pd, Pd-Ag membrane |
32, 138, 154 |
photoevolution |
22, 104 |
photospillover, in ZnO/Pd system, a |
105 |
reaction with NO, on Rh, a |
155 |
Schottky device response to, a |
240 |
see also Synthesis Gas |
|
sensors |
85, 106, 158, 234, 235 |
use in fuel cells, Grove Symp. |
209 |
Hydrogen Peroxide, photoproduction, a |
233 |
Hydrogen Sulphide, effects with Pt, a |
39, 152 |
Hydrogenation, acetophenone, a |
44 |
acetylene, a |
159 |
alkenes, a |
161, 162, 239 |
asymmetric, dehydroaminoacid derivatives, a |
42 |
unsaturated carboxylic acid, a |
111 |
buta-l,3-diene, isoprene, a |
159 |
cinnamyl alcohol, cinnamaldehyde, a |
40 |
CO, in a continuous flow microreactor, a |
160 |
on basic axides, a |
237 |
on Rh-Mn/SiO2, a |
109 |
on Ru clusters/inorganic oxides, a |
42 |
CO, CO2, on Pd/La2O3, a |
40 |
conjugated enones, styrene, benzonitrile, a |
103 |
CO2, on Rh catalysts, a |
41 |
cyclohexanone, a |
36 |
cyclohexene, a |
106 |
C2H2, C2H4, C3H6, a |
236 |
C2H2-C2H4, a |
40 |
diene, olefin, a |
40 |
dimethyl oxalate, a |
163 |
diolefin(dialkyl)Pt(II) complexes, a |
236 |
ethene, a |
107 |
ethyl pyruvate, a |
39 |
ethylanthraquinone, 2-, for Pd catalyst studies, a |
108 |
hexene-1, a |
41, 159 |
phenol, a |
236 |
propionaldehyde, a |
112 |
quinolines, on Ru/C, Raney Ni, a |
110 |
styrenes, a |
159 |
transfer, ketones, aliphatic, aromatic, a |
239 |
of cyclohex-2-en-l-one, a |
45 |
Hydrogenolysis, asymmetric, Na epoxysuccinate, a |
162 |
biphasic, a |
162 |
chloroarenes, a |
162 |
ethane, for catalyst activity, a |
236 |
methylcyclopentane, on Rh-Ag/TiO2, a |
41 |
methylcyclopropane, a |
41 |
n -butane, a |
235 |
Hydrolysis,cis -PtCl2(NH3)2, a |
38 |
Hydrosilylation, alkynes, a |
44, 162 |
asymmetric, acetophenone, a |
44, 239 |
phenylacetylene, a |
162 |
Pt colloid formation, a |
110 |
Rh colloid catalysis, a |
238 |
Imines,a |
111. 161 |
Imino Acids, photocatalytic cyclisation, a |
36 |
Impedance, Pt/SiO2, ultrathin films, a |
32 |
Indans, production, a |
43 |
Indium, grain boundary reaction with Pd-Ag-Cu, a |
153 |
Indolines, production, a |
43 |
Integrated Circuits,a |
112,113 |
Interconnects, Al-Pd-Si metallisation, a |
113 |
Ion Beam Mixing, Pd-Ni, low temperature, a |
33 |
Ion Plating, for Pt-GaAs Schottky contacts, a |
234 |
IR, imaging, sensors, a |
45, 164, 208 |
IR cell, for high pressure spectroscopy, a |
155 |
Iridium, crystal cleavage |
23 |
diffusion on Ir(110) surfaces, a |
155 |
plastic deformation |
196 |
radioactive, reprocessing |
202 |
thin films, a |
38 |
Iridium Alloys, Ir-Al quasicrystals |
21 |
Ir-Ni, for OER electrodes, a |
106 |
Ir-Ta, amorphous, diffusion barriers, a |
46 |
Iridium Complexes, polymetallic activation |
10 |
[Ir6(CO)16], isomer synthesis in NaY zeolite, a |
237 |
Iridium Oxide, AIROFs, a |
113 |
coatings for DSA electrodes |
95, 105 |
in titration monitor |
137 |
IrOx.nH2O clusters, redox states in H2O photoreactions, a |
105 |
Iridium Silicide, in IR imagers |
64 |
Isocyanate, formation, a |
41, 108 |
Isomerisation, direction of |
28 |
reactions, a |
39, 110, 111, 159, 235 |
Isomers, in Pt, Pd complexes |
28 |
Isoprene, hydrogenation, a |
159 |
Johnson, Percival Norton, palladium discovery |
141 |
Johnson Matthey, Prince of Wales Award |
|
for Innovation |
201 |
“Platinum 1991” |
132 |
Joining, PtSi fusion bonding, a |
235 |
|
|
Ketones,a |
111, 161, 239 |
|
|
Lactose, oxidation, a |
40 |
Langmuir-Blodgett Films,a |
102, 233, 234 |
Lasers,a |
107, 158 |
Lead Alloys, Pb-Cu-Sn-Se-Pd, microstructural stability, a |
33 |
Luminescence, in Pt(bpy)(NH3)22+-anthraceno-crown ether, a |
104 |
in Ru(II)polypyridine complexes, a |
105 |
quenching, Ru(bpy)32+, a |
37, 158 |
Ru(bpy)3Cl2, a |
233 |
Magnetism, Ce-Ru-Si-Ge, a |
102 |
diamagnetic transition in Pt ID complex, a |
153 |
effect on Ru multilayer films, a |
231 |
FeRuGaSi thin films, a |
155 |
Fe(PdxPt,–x)3,a |
101 |
in Fe-Pd alloys, a |
33 |
in Pd/Co multilayers, a |
31, 101, 234 |
in Pt complex oxides formed in crucibles, a |
156 |
in Pt/Co, a |
31, 112, 152 |
in U-Pt/Pd/Rh-In alloys, a |
32 |
in [Pd(tmp)]2[ReO4, a |
156 |
of Pt resistance thermometer, a |
113 |
Pt-Fe-Nb system, a |
152 |
Pt/Fe multilayers, a |
152 |
Pt3Mn-Pt3Fe, paramagnetic susceptibility, a |
228 |
Pt3Mn0.9Fe0.1, a |
229 |
Magneto-Optics, conference report |
134 |
in Co/Pt, Co/Pd multilayers |
31, 112 |
thin, ultrathin Pt/Co, a |
152 |
Manganese, catalyst promoter, a |
109 |
Medical,a |
46, 165 |
ami-tumour complexes, a |
46 |
dental alloys, a |
46 |
Membrane Reators |
27, 164 |
Membranes, for H diffusion, a |
33 |
F-polymer Nafion, PTFE/Nafion, supports, a |
106 |
Pd, H permeation through, CO, CO2 effects, a |
32 |
Pd-Ag, for H permeation |
138, 153, 154 |
Pd/ZnO, H photospillover, a |
105 |
see also Thin Films |
|
Mercaptans, formation, a |
152 |
Merensky Reef |
132 |
Metallisation, systems, a |
165, 240 |
Metallisations, Au-Sn/Pt, Al-Pd-Si, a |
112, 113 |
Methane, formation, a |
237 |
gas detector, a |
158 |
reactions, a |
108, 126, 160, 195 |
Methanol, fuel cells |
163, 209 |
see Alcohols, methyl |
|
Methyl Acrylate, dimerisation, a |
162 |
Methyl Formates, decomposition into syngas, a |
163 |
Methyl Trifluoroacetate, from CH4 |
126 |
Metliylcyclohexane, selective dehydrogenation, a |
107 |
Methylcyclopentane, reactions, a |
41, 107, 160, 235 |
Methylcyclopropane, hydrogenolysis, a |
41 |
Methylnaphthalene, 2-, oxidation, a |
233 |
Methylstyrene,α-, hydrogenation, a |
236 |
Methyl-2-Oxobutanoic Acid, 3-, photocatalytic asymmetric reduction, a |
37 |
Microscopy, scanning electron, with RuO4 in imaging, a |
39 |
Mineralogy, in Canada |
16 |
Mirrors, Rh/C multilayer X-ray, a |
39 |
Moisture, generator, a |
106 |
Molybdenum, Pd catalyst promoter, a |
43 |
Morphology, back scattering electron detector, a |
39 |
Pt/graphite thin film, a |
152 |
Pt/SiO2, 25Ǻ, a |
32 |
|
|
Naphtha, reforming, a |
39 |
Naphthalenes, oxidation, a |
233 |
NEMCA, for MeOH oxidation, a |
108 |
Neohexene, Et3SiH addition, a |
110 |
Nicholson, William, palladium discovery |
141 |
Nickel, high temperature reactions with SiC, a |
153 |
Nitric Acid, process gas filtration, a |
236 |
production, on knitted gauze |
58 |
Nitroanilines, reduction, a |
162 |
Nitroanisole,p-, reduction, a |
239 |
Nitroanthraquinone, 1-, reactions, a |
162 |
Nitrobenzene, reactions |
43, 70, 162, 238 |
Nitrogen, reactions, a |
104, 155 |
Nitrogen Oxides, NO, dissociation, reaction with H on Rh, a |
155 |
NO-CO, Ce, K effects on Rh/Al2O3, a |
41 |
self poisoning on Pt{100} |
188 |
Nitrotoluene, reduction, a |
239 |
Nonane,n-, hydroconversion, a |
109 |
Noril’sk-Talnakh, Pt deposits |
96 |
Nuclear Fuel, PGM reprocessing |
202 |
Nucleosides, C-5 alkyl, production, a |
160 |
|
|
Octane,n-, hydrocracking, isomerisation, a |
159 |
Oct-1-ene, hydroformylation, a |
239 |
Olefins, couplings, a |
161, 238 |
reactions, a |
40, 110, 111, 159, 162, 237 |
Optical Switch, in Langmuir-Blodgett film, a |
234 |
Organofluorophosphines, complexes, preparation, properties |
86 |
Osmium, polycrystalline, thermionic emission, a |
230 |
Osmium Alloys, Al-Os quasicrystals |
21 |
Osmium Complexes, Os organofluorophosphines |
86 |
Os polyhydrides, paramagnetic, a |
37 |
OsH4(PMe2Ph)3, concurrent photodissociation, |
a 37 |
OsO4, oxidant |
31 |
Os-ammines, a |
231 |
Os3Pt(CO)11(PPh3)2, a |
156 |
polymetallic activation |
10 |
Pt4Os6(CO)22(COD), Pt5Os6(CO)2l(COD)2, a |
156 |
[OsCl(NO)(PiPr3)2], synthesis, a |
232 |
Oxidants,(Ph4)[RuO2(OAc)Cl2], a |
45 |
Oxidation,2-methylnaphthalene, naphthalene, a |
233 |
alcohols, primary, aerobic, a |
163 |
alkanes, bridged polycyclic, a |
45 |
ammonia, on knitted gauze |
58 |
CO, on Pt{100} crystals, reaction monitoring |
188 |
CO, a |
107, 109 |
electro-, CO, on Pt electrode, a |
232 |
diols by Ru complex, a |
111 |
ethylene glycol, a |
103 |
glucose, a |
232 |
H, a |
232 |
HCHO, a |
157 |
HCOOH, MeOH, a |
157 |
MeOH, on Pt, a |
35, 36, 108, 232 |
Pd, elcctrodissolution, a |
157 |
phenol, water pollution control, a |
232 |
Fe40Cr2Ru steel, corrosion resistance, a |
34 |
graphite, on PtjlOO} |
188 |
H, a |
160 |
internal, in Pd-40Ag-lRE alloys, a |
33 |
lactose, on Bi-Pd/C, a |
40 |
methane, by Pd |
108, 126 |
photo, H2O, ascorbic acid, a |
105, 233 |
propylene, propylene glycol, a |
43, 160 |
Pt/Ni crystals, a |
101 |
resistance, in Pd coated Mo-W-Cr-Pd alloys |
133 |
Rh, high temperature, a |
34 |
triphenylphosphine, a |
163 |
urea, a |
35 |
[Ru(PPh3)3Cl2], a |
45 |
trans -[PtHCl(Pet3)2], a |
35 |
Oxygen, catalytic evolution, from MeOH, a |
36 |
catalytic recombination with H, for moisture generator, a |
106 |
chemisorption, on Pt-Sn/Al2O3, a |
107 |
evolution, by IrOx-Ta2O5/Ta electrodes, a |
157 |
electrodes for, a |
106 |
from HCIO4, a |
104 |
from H2SO4, a |
95 |
interaction with CO, on Ir/Al2O3, a |
42 |
interaction with Pt/CeO2 sensors, a |
158 |
reduction electrocatalysts, a |
103 |
reduction in H2SO4+phenanthroline, on Pt rotating disc, a |
232 |
sensor, a |
38, 158 |
Oxygenation, aliphatic ethers, a |
45 |
Oxyhexatriene, cyclisation, a |
238 |
Palladium, addition, to stainless steel, a |
163 |
to Au-Cu dental alloys, a |
46 |
α -Pd, H permeation in, a |
103 |
amorphous interphase with InP, a |
153 |
cluster, Pd561,Phen60(OAc)160, a |
230 |
clusters, on mica, scanning force microscopy study, a |
229 |
compounds, cyclopalladated, reaction with alkynes, a |
111 |
EuPd2Si2, valence change under pressure, a |
229 |
Fe(PdxPt, _x),, magnetism, a |
101 |
PdGe, enthalpy of formation, a |
154 |
[Pd(tmp)]2[ReO4], a |
156 |
electrodes, see Electrodes |
|
electrodissolution, a |
157 |
electroless deposition, a |
105 |
glasses, Pd40Ni40P20, internal friction, a |
229 |
history, discovery, a |
141 |
in contacts, a |
113, 165 |
in detectors, sensors, see Detectors |
|
in membrane reactor, a |
164 |
in Schottky contacts, a |
240 |
ion beam mixing in Ni, a |
33 |
membrane reactors |
27 |
membranes, a |
32, 105 |
modified aluminide coatings |
82 |
nanocrystalline, mechanical behaviour, a |
154 |
Ni/PdNi/Au, composite for contacts, a |
234 |
Pd(lll). crystal surface in H,SO4,a |
228 |
Pd(lll), sulphided, for C2H2 cyclisation. a |
236 |
Pd-Al thin film, phase formatrion, a |
153 |
Pd-H systems, Intl. Symp. |
24, 195 |
Pd/Al diffusion couple, a |
32 |
Pd/Co |
31, 101, 134, 234 |
Pd/SnO2, for gas sensor, a |
106, 158 |
PdxC1 –x, thin films, electrical properties, a |
101 |
plating, with H codeposition, a |
106 |
radioactive, reprocessing |
202 |
rod, electrochemical charging, a |
233 |
thin films, a |
38. 154. 229 |
ultrafine particles, for H absorption. adsorption, a |
157 |
Palladium Alloys, assessed for contact characteristics, a |
165 |
Pd solid solution, electrical resistivity, a |
33 |
Pd-Ag, H permeation |
138. 153. 154, 230 |
Pd-Ag-Cu. grain boundary reactions, a |
153 |
Pd-40Ag-lRE, internal oxidation, a |
33 |
Pd-Ag-Y(Gd), diffusion characteristics, a |
33 |
Pd-Al-La-Ni, H absorption, a |
154 |
Pd-Au, lattice expansion, a |
154 |
Pd-Au-Cu, dental, tarnishing tests, a |
46 |
Pd-Cr, in strain gauges |
65 |
Pd-C-Mg, a |
229 |
Pd-Er, preparation, metallography, a |
154 |
Pd-Fe, sputter deposited, a |
33 |
Pd-H systems, Intl. Symp. |
24 |
Pd-Ho, preparation, metallography, a |
154 |
Pd-Mo-W-Cr, oxidation resistance |
133 |
Pd-Ni, H insertion into thin films, a |
157 |
plating bath |
208 |
Pd-Ni-P, crystal nucleation, glass formation, a |
102 |
Pd-Pb-Cu-Sn-Se, microstructural stability, a |
33 |
Pd-Pt-U, magnetic transport properties, a |
32 |
Pd-rare earth oxides, coupled reduction, a |
154 |
Pd-Si, a |
154, 229. 230 |
Pd-Si-H, H diffusion, electromigration. a |
230 |
Pd-Te, system constitution, a |
33 |
Pd-Zr, amorphisation |
83 |
Palladium Complexes, H.PdCl6, effect on Ag imaging colloids, a |
36 |
isomers |
28 |
ortho-palladated imines, mesogens, a |
231 |
Pd organofluorophosphines |
86 |
PdLCl2, Pd(L-H)2, Pd(L-2H), a |
231 |
Pd(II)-Sn, a |
103 |
polymetallic activation |
10 |
[Pd(3,3′-bipyridazine)2][C1O4]2, a |
102 |
[Pd2X4(PPrn3)2] + l,4-benzodiazepines, a |
231 |
[Pd9As8(PPh38], [Pd9Sb6(PPh3)8], a |
156 |
|
Palladium Silicides, alloy glasses, structure changes, a |
33 |
|
for H evolution, a |
35 |
|
mechanical alloying, a |
154 |
|
Pd2Si, in ULSI, a |
240 |
|
see also Palladium Alloys, Pd-Si |
|
|
Patents |
47-56, 114-124, 166-176,241-249 |
|
Pentane, dehydrogenation, a |
158 |
|
Pentene, 1-, hydroformylation, a |
110 |
|
Permeability, see also Diffusion |
|
|
Permeation, H, through Pd |
32, 138, 154 |
Phase Changes, at Pd/InP interface, a |
153 |
at Pt/GaAs, Si/Pt/GaAs interfaces, a |
153 |
in Al-Pd thin films, a |
153 |
Phase Diagrams, CeRu2(Ge-Si)2, a |
102 |
Fe(PdxPt1–x)3, a |
101 |
Pd-Te, a |
33 |
RuO2-Bi2O3-CuO, a |
155 |
Phenol,a |
232, 236 |
Phenylacetylene, hydrosilylation, a |
162 |
Phenylcarbamate, N-, formation, a |
43 |
Phenylpropanal, 2-, from styrene, a |
42 |
Phosphine, displacing Co on Rh catalyst, a |
109 |
Phosphonicα -Amino Acids, synthesis, a |
161 |
Photocatalvsis,a |
36-37, 43, 104-105, 158. 233-234 |
Photodissociatitm, OsH4 (PMe, Ph)3. a |
37 |
Photolysis, Ru(II) diimine. a |
105 |
Plating, electroless. Pt. Pd. Ni. a |
105 |
Pd. with H codeposition. a |
106 |
Platinum, addition to YBaCuO superconductor, a |
229 |
compounds. Fe(PdxPt1–x)3, magnetism, a |
101 |
Pt3Mn-Pt3Fe, paramagnetic, a |
228 |
Pt3Mn0.9,Fe0.1, magnetism in. a |
229 |
CVD, a |
152 |
deposits, in USSR |
96 |
doped heavy metal fluoride glass, a |
164 |
n -Si crystals, a |
228 |
electrodes, see Electrodes |
|
electroless deposition, a |
105 |
equilibrium shape, surface energy, a |
101 |
etching foils, a |
38 |
high temperature reactions with SiC. a |
153 |
hydrous oxide films, a |
102 |
implanted in steel, reduced embrittlement. a |
228 |
in electrical contacts, a |
46 |
in high temperature superconductivity |
2 |
in Schottky NH, sensor |
200 |
ion beam deposition, a |
112 |
multilaycrcd thin films, preparation, structure, a |
228 |
Pt(100). Pt(l11), for adsorption, a |
152 |
Pt(lll). reactions, a |
228. 235 |
Pt-GaAs. in Schottky contacts. a |
234 |
Pt-H bond cleavage, a |
35 |
Pt/CdS dispersions, photocorrosion. a |
104 |
Pt/CdS.Ag,S/RuO,. for NH, production, a |
104 |
Pt/Co. in magneto-optic devices |
31. 112. 134. 152. 228 |
Pt/Fe thin film multilayers, anisotropy. a |
152 |
Pt/GaAs, Si/Pt/GaAs. intermixed phase, a |
153 |
Pt/mica disks, fabrication, a |
234 |
|
Pt/Ni. oxidation prevention, a |
101 |
|
Pt/pyrolytic graphite, thin film morphology, a |
152 |
|
Pt/Ta. Pt/Ti. barriers, a |
112 |
Pt/TiO2, gas sensor, a |
158 |
Pt{100}. chemical reaction fronts |
188 |
radioactive, reprocessing |
202 |
thick films, laser power detection, a |
158 |
thin films, a |
38. 101 |
ultrafine particles, for electrooxidations. a |
157 |
ultrathin films, /SiO2. properties, a |
32 |
underlayers, in YBaCuO superconductors, a |
240 |
“Platinum 1991” |
132 |
Platinum Alloys, in PAFC fuel cells, a |
45 |
Pt-Al. amorphisation |
83 |
quasicrystals |
21 |
Pt-Co/C, for O electroreduction. a |
103 |
Pt-Fe-Nb, magnetic, thermal properties, a |
152 |
Pt-Pd. solid solution, for ethylene glycol oxidation, a |
103 |
Pt-Rh. gauze, for NH, oxidation |
58 |
Pt-Rh, Pt-Rh-Au, volatilisation, a |
32 |
Pt-U-In. magnetic, transport properties, a |
32 |
Pt-Y-B, properties, a |
32 |
Platinum Complexes, anti-cancer, a |
46 |
CODPt(CD3)2, Pt surface alkyls. a |
236 |
isomers |
28 |
Os3Pt(CO)11(PPh3)2, a |
156 |
o -vinyl Pt(IV), a |
161 |
polymetallic activation |
10 |
Pt blues, for H2 photoevolution, a |
43 |
Pt organofluorophosphines |
86 |
PtCI2 (bis(aminomethyl)dimethylsilanel, anticancer, a |
46 |
Pt(bpy)(CN)3/Pt electrodes, spectroscopic properties, a |
233 |
Pt(bpy)(NH3)22+, luminescence, a |
104 |
Pt(II)-diaminobiotin, synthesis. characteristisation, a |
231 |
Pt-Sn bimetallic, a |
34 |
Pt4Os6(CO)22(COD), Pt5Os6(CO)21(COD)2, a |
156 |
R2Ba2CuPtO8, R2Ba3Cu2PtO10, Ba4CuPt2O9, a |
l56 |
[PtI2(L1)][BF4], a |
231 |
[Pt(3,3′-bipyridazine)2][CIO4]2, a |
102 |
[Pt(en)2][Pt(en)2I2](C1O4)4. magnetism in, a |
153 |
[Pt(L1][BF4],a |
231 |
[Pt2(μ -C=CHPh)(C(≡CPh)(Pet3)]BF4, photochemical atom-transfer, a |
104 |
cis -PtCl2(NH3)2, hydrolysis products, a |
38 |
cis -[PtCl2(PPh3)2], a |
231 |
trans- [PtHCl(Pet3) 2], electrochem ical oxidation, a |
35 |
trans -[Pt(H)X(PPh3)2], a |
231 |
Platinum Silicides, for H evolution, a |
35 |
from SiC/Pt high temperature reactions, a |
153 |
fusion bonding, a |
235 |
in IR imagers |
45, 64, 208 |
PtSi, columnar grains, a |
32 |
contact to Ge-Si/Si, a |
112 |
in Schottky diodes, a |
164, 228 |
in ULSI, a |
240 |
PtSi/Si(100), formation, a |
240 |
Poisoning, by metal ions, of Pd catalysts, a |
108 |
catalysts by S, a |
39, 108, 235 |
CO, onPd/SiO2, a |
41 |
self, CO, NO on Pt{ 100} |
188 |
Pollution Control,1991 SAE conference reports |
94 |
diesel exhaust |
178, 187 |
electrolyte effluent treatment, a |
35 |
phenol in waste water, a |
232 |
radioactive PGM waste |
202 |
Polyaldehydes, from polybutadiene, a |
44 |
Polymerisation,a |
43, 110 |
Polymers, co-, Ru complex+ DDA, in L-B films, a |
233 |
layered conducting/Pt, a |
35 |
+ RuO4, in electron detector, a |
39 |
Potassium |
|
Prince of Wales Award for Innovation |
201 |
Promoters,10,11-dihydrocinchonidine, a |
39 |
Bi, on Pd/C, a |
40 |
Ca, K, La, on Pd/SiO2 catalysts, a |
41 |
Cr, to Pd/HY catalysts, a |
109 |
Mn, V, a |
109, 160 |
Mo, V, in PdCl2 + Keggin-type anions, a |
43 |
Propadiene, effect on ethene hydrogenation, a |
107 |
Propan-2-ol, for ketone hydrogenation, a |
239 |
Propene, hydroformylation, a |
109 |
Propionaldehyde, hydrogenation, by RuHI(tppts), a 112 |
|
Propylene, reactions, a |
43, 160, 236, 237 |
Propylene Glycol, oxidation, a |
160 |
Propylene Glycol Monoacetate, formation, a |
43 |
Pyrimidine Nucleosides, reaction with triflates |
160 |
Quasicrystals, in Al-Rh, -Pd, -Ir, -Os, -Pt, -Ru |
21 |
Quinolines,a |
110 |
Radioactivity, reprocessing PGM waste |
202 |
Rapid Thermal Processing, for electrical contacts, a 46 |
|
Rare Earths, new compounds with Ru, a |
34 |
Reed Switches,a |
165 |
Reforming, reactions, a |
39, 236 |
Resistance Thermometers, Pt, stability, a |
113 |
Resistors, Pt, in thermal conductivity meter, in mine pit, a |
234 |
RuO2 thick film, thin film, a |
113,235 |
thick film, a |
155, 240 |
Reviews, electrocatalysts for PAFC, a |
45 |
metal complex anti-cancer drugs, a |
46 |
Pd catalysts in industry, a |
44 |
see also Conferences |
|
Rhodium, coatings in reed switches, a |
165 |
compounds, RhGe, enthalpy of formation, a |
154 |
Rh2O3,a |
34 |
(CsMe5)Rh(PMe3)H2, a |
156 |
foil, hydrazine decomposition, a |
155 |
oxidation, high temperature, a |
34 |
radioactive, reprocessing |
202 |
Rh(l11), reactions, a |
155, 228 |
Rh/C multilayers, for soft X-ray use. a |
39 |
thin films, a |
38 |
on Ag{001}, Au{001}, a |
230 |
Rhodium Alloys, Rh-Al quasicrystals |
21 |
Rh-Cu, single crystal solidification, a |
155 |
Rh-Pt, Rh-Pt-Au, volatilisation, a |
32 |
Rh-U-In, magnetic, transport properties, a |
32 |
Rhodium Complexes, Cp*Rh, electrochemical reduction, a |
36 |
polymetallic activation |
10 |
Rh(2,4,6-Me3C6H2)3, a |
34 |
Rh[P(OPh)3]3[P(OC6H4)(OPh)2], a |
156 |
[Cp*RhCl]2, electrochemical production, a |
36 |
[RhIII(L)2Cl2] + BF4–, films, electrochemical properties, a |
36 |
Royal Commission on Environmental Pollution, |
|
report on diesel exhaust |
187 |
Ruthenium, colloids, of Ru double salt, a |
34 |
compounds, anti-cancer properties, a |
46 |
RuGe, enthalpy of formation, a |
154 |
RuSe2 crystal growth, a |
155 |
RuTiSnO, O evolution, a |
104 |
LiRuO2,a |
36 |
effect on Fe40Cr steel, a |
34 |
in thick film resistors, a |
240 |
radioactive, reprocessing |
202 |
Ru(0001), thin Cu films on, a |
230 |
Ru-rare earth systems, a |
34 |
Ruthenium Alloys, FeRuGaSi thin films, magnetism, structure, a |
155 |
Ru-Al quasicrystals |
21 |
Ru-Al-Mn-Si, icosahedral, a |
231 |
Ru-Ni, for OER electrodes, a |
106 |
Ru-Ti, electrochemistry, a |
103 |
Ruthenium Complexes, oxidants |
31, 45 |
polymetallic activation |
10 |
Ru organofluorophosphines |
86 |
Ru(bpy)32+, for H2 evolution, using Pt blues, a |
43 |
luminescence quenching, a |
37, 158 |
Ru(bpy)32+ on Vycor glass, photo properties, a |
37 |
Ru(II) bipyridine, optical switching, in L-B film, a |
23 |
Ru(II)polypyridines, photo properties, a |
105 |
[Ru(η,-C5H5)(CS2)(PPh3)2]+, a |
156 |
(Ph4)[RuO2(OAc)Cl2], a |
45 |
[RuL2(μ -(CN)Ru(CN)L2′)2]light to electricity conversion, a |
37 |
[Ru(bipy)2(L-L′)](PF6)2, photolysis, a |
105 |
[Ru(bpy)2(CN)2]2Ru(bpy)(COO)2)22–, antenna sensitised, a |
37 |
[Ru(bpy)2(Vbpy)]2+, copolymers, in L-B films, a |
233 |
preparation, characterisation, a |
158 |
[Ru(bpy)x(bpz)3–x]2+, H2O2 photoproduction, a |
233 |
[RufMeLXCOXPPhjJjfCl)], a |
34 |
[Ru(PPh3)2(m -ClC6H4CO2)Cl2], formation, a |
45 |
[Ru(saloph)Cl2]–, carbonylations |
70 |
[Ru(_SH2)(PPh3)(′S4′)]THF, structure, a |
232 |
[RuII/EDTA-H)(CO)]–, carbonylations |
70 |
[(7,i-C5Hi)L2RuNC-aryl] +, a |
102 |
[(TPP)Ru(CO)]-, reaction with Mel, a |
158 |
Ruthenium Oxides, Bi,Ru,O7, reaction |
|
with CuO in resistors, a |
155 |
RuO2, coatings for DSA, a |
105 |
in resistors, a |
113, 155, 240 |
reduction to LiRuO2, a |
36 |
RuO2/Al, interface properties, a |
113 |
RuO2/C, electrode in alcohol detector, a |
106 |
RuO4, + polymer blends, for back scattering electron detector, a |
39 |
Schottky Barrier Detectors, in IR imaging |
45, 208 |
Schottky Barriers, sensors, a |
158, 200 |
Schottky Contacts, preparation, a |
234, 240 |
Schottky Diodes,a |
106, 164, 228 |
Semiconductors, technology, compared to superconductors |
2 |
Sensors, see Detectors |
|
Silacyclobutene, formation, a |
42 |
Silicon, crystals, Pt doped, a |
228 |
reaction with Pd, a |
229 |
Single Crystals, Pt, for adsorptions, a |
152 |
Pt{100}, for chemical reaction monitoring |
188 |
SMSI, in CO2 hydrogenation on Rh, a |
41 |
in Pt/Al2O3, Pt/TiO2, a |
235 |
Sodium Epox) succinate, asymmetric hydrogenolysis, a |
162 |
Solar Energy, adsorption using Rh/Al2O3, a |
37 |
Solar Reactor,a |
37 |
Solder, Sn/Pb temperature cycling with Pd/Ag, a |
165 |
Solidification, RhCu single crystals, a |
155 |
Sputtering, gas effect, on Pt/Co multilayers, a |
228 |
SQUIDs, magnetometry, a |
101 |
Stainless Steel, improved properties, a |
34, 163, 228 |
Strain Gauges for high temperatures |
65 |
Styrene reactions, a |
42, 103, 110, 111, 159, 161, 239 |
Sulphur, catalyst poison, a |
108, 235 |
role in catalytic reforming, a |
39 |
Sulphuric Acid, O evolution from |
95 |
Superconductors, high temperature |
2 |
YBaCuO, Pt additions to, a |
229, 240 |
Surfactants, to stabilise Rh(0) colloidal particles, a |
162 |
Symposia, see Conferences |
|
Synthesis Gas, alcohol, hydrocarbon synthesis, a |
41, 42, 109, 159 |
for hydroformylations, a |
239 |
production, a |
113, 163 |
reaction on Fischer-Tropsch catalyst, a |
160 |
Temperature Measurement,a |
113, 208 |
Thermal Conductivity Meter, for coal mines, |
234 |
Thermocouples, PtRh30/PtRh6, for extreme conditions, a |
113 |
Thick Films, Pd, in contacts, a |
165 |
Pd/Ag, conductor metallisation, a |
165 |
Pt, for laser power detector, a |
158 |
resistors, a |
235, 240 |
Thin Films, amorphous metals |
83 |
a-IrTa, diffusion barrier, a |
46 |
capacitors, a |
112 |
Cu on Ru(OOOl), a |
230 |
FeRuGaSi multilayers, structure, magnetic properties, a |
155 |
Fe-C/AI2O3/Fe-Ru multilayers, electrical restivity, a |
231 |
hydrous oxide/Pt, a |
102 |
Langmuir-Blodgett, a |
102, 233, 234 |
Pd, disc electrodes, H insertion, a |
157 |
grown by electroless plating, a |
38 |
in sensors, see Detectors interaction with SiGe/Si(100), a |
229 |
Pd-Ag alloys, conductivity, a |
230 |
Pd-Al, phase formation, a |
153 |
Pd-Co, multilayers, a |
234 |
Pd-Cr strain gauges |
65 |
Pd/InP, amorphous phase formation, a |
153 |
PdxC1–x, preparation, electrical properties, a 101 |
|
Pt, ion beam deposited, a |
112 |
Pt, Ir, Rh, Ni, Re, grown by OMCVD, a |
38 |
Pt, Rh, Pd, in metallisation systems, a |
240 |
Pt oxides, growth, characterisation, a |
101 |
PtSi/Si(100), by codeposition, MBE system, a |
240 |
Pt/Co multilayered, magneto-optics, a |
112, 152, 228 |
Pt/Fe multilayers, magnetism, a |
152 |
Pt/GaAs, amorphous phase formation, a |
153 |
Pt/highly oriented pyrolytic graphite, annealing, morphology, a |
152 |
Pt/Mn/Sb, multilayered, preparation, structure, a |
228 |
Pt/SiO2, ultrathin, impedance, morphology, a |
32 |
Rh on AujOOl}, Ag{001(, growth, a |
230 |
RuO2 resistors, a |
113 |
see also Membranes |
|
YBaCuO/Pt/YSZ/Hastelloy, superconducting, a |
|
Thiophene, formation from C2H2, a |
236 |
Tin,a |
34, 153 |
Triflates, reactions, a |
160, 161, 238 |
Trifluoroacetimidoyl Iodides,a |
161 |
Trimethylpentane, 2,2,4-, hydrocracking, isomerisation, a |
159 |
Triphenylphosphine, oxidation, a |
163 |
Tritium, enrichment of D in giant Pd cluster, a |
230 |
ULSI, barrier metals for, a |
240 |
Uranous Nitrate, production, a |
164 |
Urea, oxidation, on Pt anodes, a |
35 |
USSR, Pt deposits |
96 |
UV, Schottky barrier detector, a |
164 |
Vanadium, Pd catalyst promoter, a |
43 |
Vehicles, fuel cell propelled, Grove Symp. |
209 |
Vinyl-4-Pentynoic Acid, 5-,a |
238 |
Vinyl Acetate,β -vinylation, a |
161 |
Vinylation, reactions, a |
43. 161 |
Vinylbromides, B substitution, a |
161 |
Vinylhalogenides, reduction, a |
161 |
Vinylic Cyclopropane, heteroannulation, |
|
carboannulation, a Volatilisation, Pt-Rh alloys, a |
43 |
Voltammograms, Pt(lll), Pt(110), Pt(100) surfaces, a |
32 |
Water, low-level moisture generator, a |
106 |
photoreactions, a |
43, 105 |
treatment, pollution control, a |
232 |
Water Gas Shift Reaction |
70, 110, 163, 164 |
Wear, characteristics of contacts, a |
165 |
Wires, Ir, plastic deformation |
196 |
Ir, Rh, for HCN synthesis, a |
160 |
superconducting |
2 |
Wollaston, William Hyde, palladium discovery |
143 |
X-Rays, mirror construction, a |
39 |
Zinc Oxide, dielectric, in Pt/Co magneto-optics, a |
112 |