In Memoriam
In Memoriam
In Memoriam
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408 <strong>In</strong>dex<br />
Bretton Woods agreement, 5–6, 305–306<br />
bridges, dental, 299<br />
bridgework, 302–303<br />
Brother Hypolite (monk), 324<br />
brushing, 348<br />
Brust method, 340<br />
bulk metallic glass (BMGs), 152–153<br />
bullion bank, 4<br />
burnish golds, 319, 320–321, 341–343<br />
bursting discs, 402<br />
C<br />
cable-making technology, 206<br />
calcination, 94<br />
caprolactam, 110<br />
CAPTEK TM , 302, 313f<br />
carbon monoxide<br />
oxidation, 59–61, 95–97<br />
sensors, 115<br />
Cassius, Andreas, 351–352<br />
casting, 292–293<br />
catalysis, 379<br />
catalysts. See gold catalysts<br />
catalytic wet air oxidation (CWAO), 97<br />
cation exchange, 92<br />
CCR5 antagonist, 227<br />
CDs, optical reflector coatings, 401<br />
Central Bank Gold Agreement, 6<br />
central banks, 1, 5–6<br />
centrifugal casting, 195, 197t<br />
cetyltrimethylammonium bromide (C 16TAB), 32, 371,<br />
386–388<br />
cetyltrimethylammonium chloride (C 16TAC), 371<br />
Chagas disease, 226<br />
chain-making, 199–200<br />
chalcogenido complexes, 71–76<br />
chemical processing, 107–113<br />
conversion of biomass to platform chemicals, 107–108<br />
hydrogen peroxide, 113<br />
methyl glycolate, 110–111<br />
nylon precursors, 110–111<br />
petroleum refining, 113<br />
propene oxidation, 111–113<br />
selective hydrogenation, 113<br />
selective oxidation of sugars, 111<br />
vinyl acetate monomer, 108–110<br />
chemical vapor deposition (CVD), 93<br />
China, gold production in, 4<br />
chloride-free preparations, 93<br />
chloroethene, 99<br />
chrysotherapy, 218–219. See also gold drugs<br />
cisplatin, 223<br />
clusters, 43, 44f<br />
coatings, spectrally selective, 376–378<br />
Co-Hg gold layers, 268–270<br />
coining, 199<br />
coins, 9<br />
cold forging, 199<br />
cold forming<br />
blanking, 199<br />
coining, 199<br />
cold forging, 199<br />
stamping, 198–199<br />
cold-working, 126–127<br />
colloidal metallic gold, color generation of, 353–354<br />
colloids, 92<br />
color of bulk gold, 18–21<br />
color variation, 144–150<br />
black, 147–150<br />
blue, 147–150<br />
purple, 147–150<br />
shift from yellow to reddish, greenish, and whitish,<br />
144–145<br />
white gold alloys, 145–147<br />
colorants, 376<br />
colorimetric sensors, 380<br />
commodity prices, 305–308<br />
complete oxidation, 95–97<br />
composite electrodeposition, 257–258<br />
computer modeling, 210–211<br />
computer-aided design (CAD), 205–206<br />
contact materials, 264<br />
coprecipitation (CP), 92<br />
core-shell nanoparticles, 373<br />
coronary stents, 404<br />
croton alcohol, 97<br />
crown ether, 33<br />
crowns, 312f<br />
dental, 299<br />
crystal structure, 16–17<br />
cyanide electrolyte, 241–243<br />
cyanide heap leaching, 3<br />
cyanide-plating baths, 247–253<br />
acid electrolytes, 251–253<br />
alkaline electrolytes, 247–250<br />
neutral electrolytes, 250–251<br />
trivalent gold cyanide electrolytes, 253<br />
cyclohexane, 110<br />
cyclohexanol, 110<br />
cyclohexanone, 110<br />
[(cyclohexyl isocyanide) 2Au I ](PF 6), 37f<br />
cyclometalated gold(III) alkynyl complexes, structures<br />
if, 81–82<br />
D<br />
data storage devices, 378–379<br />
decals, 349–350<br />
decanuclear gold(I) complex, structure of, 72f<br />
decorative finishes, 260–264<br />
decorative gold materials, 317–363<br />
application techniques, 348–350<br />
brushing, 348<br />
ink-jet printing, 350<br />
machine banding, 348<br />
pad printing, 350<br />
screen printing, 348–350<br />
chemistry of, 326–345<br />
burnish golds, 341–343<br />
gold mercaptide systems, 327–337<br />
gold nanoparticles, 340–341<br />
gold sulforesinates, 326<br />
gold-silver mercaptides, 337–338<br />
high-firing gold formulations, 344–345<br />
microwave-resistant gold, 344<br />
self-burnish gold, 343–344<br />
sulfur-free gold compounds, 338–340