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纳米技术已经把化学惰性的金变成新的、具有工业应用前景的催化剂.作者从纳米金催化剂的制备、催化性能、典型应用以及催化机理等方面对近4年来金催化剂的研究现状进行了较全面的综评.以便进一步加深对金催化剂的认识.

参考文献

[1] Corti C W;Holliday R J;Thompson D T .Developing new industrial applications for gold:gold nanotechnology[J].Gold Bulletin,2002,35:111-117.
[2] THOMPSON D T .The international conference on catalytic gold[J].Gold Bulletin,2001,34:56-66.
[3] THOMPSON D T .Highlights of the symposium on gold/silver catalysis[J].Gold Bulletin,2001,34:134-140.
[4] Geoffrey C Bond .Gold: A Relatively New Catalyst[J].Gold Bulletin,2001(4):117-119.
[5] Masatake Haruta;Masakazu Date .Advances in the catalysis of Au nanoparticles[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2001(1/2):427-437.
[6] 王东辉,郝郑平,程代云,史喜成.负载型金催化剂在化工中的应用[J].化工进展,2002(07):462-465.
[7] 齐世学,邹旭华,安立敦.负载型金催化剂[J].化学通报,2002(11):734-741,733.
[8] Grisel R J H;Nieuwenhuys B E .A comparative study of the oxidation of CO and CH4 over Au/MOX/Al2O3
[9] Guido Mul;Aalbert Zwijnenburg;Bart van der Linden;Michiel Makkee;Jacob A.Moulijn .Stability and Selectivity of Au/TiO_2 and Au/TiO_2/SiO_2 Catalysts in Propene Epoxidation:An in Situ FT-IR Study[J].Journal of Catalysis,2001(1):128-137.
[10] Ruud Grisel;Kees-Jan Weststrate;Andrea Gluhoi .Catalysis by gold nanoparticles[J].Gold Bulletin,2002(2):39-45.
[11] Golunski S;Rajaram R;Hodge N et al.Low-temperature redox activity in co-precipitated catalysts: a comparison between gold and platinum-group metals[J].Catalysis Today,2002,72:107-113.
[12] Hodge N A;Kiely C J;Whyman R et al.Microstructural comparison of calcined and uncalcined gold/iron-oxide catalysts for low-temperature CO oxidation[J].Catalysis Today,2002,72:133-144.
[13] Park Eun Duck;Lee Jae Sung .Effects of Pretreatment Conditions on CO Oxidation over Supported Au Catalysts[J].Journal of Catalysis,1999(1):1-11.
[14] Anke Wolf;Ferdi Schuth .A systematic study of the synthesis conditions for the preparation of highly active gold catalysts[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2002(1/2):1-13.
[15] Erol Seker;Erdogan Gulari .Single step sol-gel made gold on alumina catalyst for selective reduction of NO_x under oxidizing conditions: effect of gold precursor and reaction conditions[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2002(1/2):203-217.
[16] Schimpf S;Lucas M;Mohr C et al.Supported gold nanoparticles: in-depth catalyst characterization and application in hydrogenation and oxidation reactions[J].Catalysis Today,2002,72:63-78.
[17] Jan-Dierk Grunwaldt;Christoph Kiener;Clemens Wogerbauer;Alfons Baiker .Preparation of Supported Gold Catalysts for Low-Temperature CO Oxidation via "Size-Controlled" Gold Colloids[J].Journal of Catalysis,1999(2):223-232.
[18] Porta F;Prati L;Rossi M et al.Metal sols as a useful tool for heterogeneous gold catalyst preparation:reinvestigation of a liquid phase oxidation[J].Catalysis Today,2000,61:165-172.
[19] B. S. Uphade;T. Akita;T. Nakamura;M. Haruta .Vapor-Phase Epoxidation of Propene Using H_2 and O_2 over Au/Ti-MCM-48[J].Journal of Catalysis,2002(2):331-340.
[20] Riahi G;Guillemot D;Polisset-Thfoin M et al.Preparation, characterization and catalytic activity of gold-based nanoparticles on HY zeolites[J].Catalysis Today,2002,72:115-121.
[21] T.V.Choudhary;C.Sivadinarayana;C.C.Chusuei;A.K.Datye;J.P.Fackler Jr;D.W.Goodman .CO oxidation on supported nano-Au catalysts synthesized from a [Au_6(PPh_3)_6](BF_4)_2 complex[J].Journal of Catalysis,2002(2):247-255.
[22] Kozlova AP.;Kozlov AI.;Asakura K.;Iwasawa Y.;Sugiyama S. .Iron-oxide supported gold catalysts derived from gold-phosphine complex Au(PPh3)(NO3): State and structure of the support[J].Journal of Catalysis,1998(2):426-438.
[23] Yeong-Jey Chen;Chuin-tih Yeh .Deposition of Highly Dispersed Gold on ALumina Support[J].Journal of Catalysis,2001(1):59-68.
[24] 邹旭华,齐世学,贺红军,索掌怀,徐秀峰,安立敦,段雪.以Au(PPh3)(NO3)为前体的Au/NiO催化剂的制备及其对CO的催化氧化[J].分子催化,2000(03):171-174.
[25] 邹旭华,齐世学,安立敦.不同方法制备的负载型金催化剂对CO的催化性能[J].中国学术期刊文摘,2000(04):505-506.
[26] Kozlova A P;Kozlov A I;Sugiyama S et al.Study of gold species in iron-oxide-supported gold catalysts derived from gold-phosphine complex Au(PPh3)(NO3) and As-precipitated wet Fe(OH)3[J].Journal of Catalysis,1999,181:37-48.
[27] Haichao Liu;Alexander I. Kozlov;Anguelina P. Kozlova;Takafumi Shido;Kiyotaka Asakura;Yasuhiro Iwasawa .Active Oxygen Species and Mechanism for Low-Temperature CO Oxidation Reaction on a TiO_2-Supported Au Catalyst Prepared from Au(PPh_3)(NO_3) and As-Precipitated Titanium Hydroxide[J].Journal of Catalysis,1999(2):252-264.
[28] Takayoshi Uematsu;Takao Maruyama;Nobuyuki Ichikuni;Shogo Shimazu;Lin Fan .New application of spray reaction technique to the preparation of supported gold catalysts for environmental catalysis[J].Journal of molecular catalysis, A. Chemical,2002(0):209-214.
[29] D. A. H. Cunningham;W. Vogel;R. M. Torres Sanchez;K. Tanaka;M. Haruta .Structural Analysis of Au/TiO_2 Catalysts by Debye Function Analysis[J].Journal of Catalysis,1999(1):24-31.
[30] Espinosa G;Del Angel G;Barbier J et al.Catalytic behavior and active sites structure of PtAu/Al2O3 bimetallic catalysts prepared by surface redox reactions[J].Journal of Molecular Catalysis A:Chemical,2000,164:3-262.
[31] Bert D. Chandler;Alexander B. Schabel;Christopher F. Blanford;Louis H. Pignolet .Preparation and Characterization of Supported Bimetallic Pt-Au Particle Catalysts from Molecular Cluster and Chloride Salt Precursors[J].Journal of Catalysis,1999(2):367-384.
[32] 吴世华,黄唯平,张守民,魏伟,张淑红,郑修成.溶剂化金属原子浸渍法制备高分散Au/TiO2低温CO氧化催化剂[J].催化学报,2000(05):419-422.
[33] 王东辉,程代云,郝郑平,史喜成.纳米金催化剂上CO低(常)温氧化的研究[J].化学进展,2002(05):360-367.
[34] M.Date;M.Haruta .Moisture Effect on CO Oxidation over Au/TiO_2 Catalyst[J].Journal of Catalysis,2001(2):221-224.
[35] Lin C-H;Hsu S-H;Lee M-Y et al.Active morphology of Au/γ -A12O3-A model by EXAFS[J].Journal of Catalysis,2002,209:62-68.
[36] Grisel R J H;Weststrate C J;Goossens A et al.Oxidation of CO over Au/Mox/Al2O3 multi-component catalysts in a hydrogen-rich environment[J].Catalysis Today,2002,72:123-132.
[37] Bethke GK.;Kung HH. .Selective CO oxidation in a hydrogen-rich stream over Au/gamma-Al2O3 catalysts[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2000(Special Issue SI):43-53.
[38] Ruth K. .The effects of SO_2 on the oxidation of CO and propane on supported Pt and Au catalysts[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,2000(3/4):133-138.
[39] Krzysztof Krawczyk;Michal Molotek .Combined plasma-catalytic processing of nitrous oxide[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,2001(3/4):233-245.
[40] Jeroen Van Craenenbroeck;Donka Andreeva;Tatyana Tabakova;Kristof Van Werde;Jules Mullens;Francis Verpoort .Spectroscopic Analysis of Au-V-Based Catalysts and Their Activity in the Catalytic Removal of Diesel Soot Particulates[J].Journal of Catalysis,2002(2):515-527.
[41] Auusbi Uede;Mastake Haruta .Nitric Oxide Reduction with Hydrogen, Carbon Monoxide, and Hydrocarbons over Gold Catalysts[J].Gold Bulletin,1999(1):3-11.
[42] Bonarowska M.;Juszczyka W.;Pielaszek J.;Kowalczyk Z. Karpinski Z.;Burda B. .Hydrodechlorination of CCl2F2 (CFC-12) over Pd-Au/C catalysts[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,2001(1):13-20.
[43] Andreeva D;Idakiev V;Tabakova T et al.Low-temperature water-gas shift reaction over Au/CeO2 catalysts[J].Catalysis Today,2002,72:51-57.
[44] Tabakova T;Idakiev V;Andreeva D et al.Influence of the microscopic properties of the support on the catalytic activity of Au/ZnO, Au/ZrO2, Au/Fe2O3, Au/Fe2O3-ZnO, Au/Fe2O3-ZrO2 catalysts for the WGS reaction[J].Applied Catalysis A:General,2000,202:91-97.
[45] Donka Andreeva .Low Temperature Water Gas Shift over Gold Catalysts[J].Gold Bulletin,2002(3):82-88.
[46] Mul G;Zwijnenburg A;Van der Linden B et al.Stability and selectivity of Au/TiO2 and Au/TiO/SiO2 catalysts in propene epoxidation: an in situ FT-IR study[J].Journal of Catalysis,2001,201:128-137.
[47] B. S. Uphade;T. Akita;T. Nakamura;M. Haruta .Vapor-Phase Epoxidation of Propene Using H_2 and O_2 over Au/Ti-MCM-48[J].Journal of Catalysis,2002(2):331-340.
[48] Stangland EE.;Andres RP.;Delgass WN.;Stavens KB. .Characterization of gold-titania catalysts via oxidation of propylene to propylene oxide[J].Journal of Catalysis,2000(2):332-347.
[49] Uphade BS.;Tsubota S.;Haruta M.;Okumura M. .Effect of physical mixing of CsCl with Au/Ti-MCM-41 on the gas-phase epoxidation of propene using H-2 and O-2: Drastic depression of H-2 consumption[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2000(1/2):43-50.
[50] Porta F;Prati L;Rossi M et al.Metal sols as a useful tool for heterogeneous gold catalyst preparation:reinvestigation of a liquid phase oxidation[J].Catalysis Today,2000,61:165-172.
[51] Biella S.;Prati L.;Rossi M. .Selective oxidation of D-glucose on gold catalyst[J].Journal of Catalysis,2002(2):242-247.
[52] Sakurai H.;Haruta M. .CARBON DIOXIDE AND CARBON MONOXIDE HYDROGENATION OVER GOLD SUPPORTED ON TITANIUM, IRON, AND ZINC OXIDES[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,1995(1/2):93-105.
[53] Hutchings G J .Gold catalysis in chemical processing[J].Catalysis Today,2002,72:11-17.
[54] A.Sarkany;A.Horvath;A.Beck .Hydrogenation of acetylene over low loaded Pd and Pd-Au/SiO_2 catalysts[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2002(1/2):117-125.
[55] Kondratenko EV.;Baerns M.;Buyevskaya O. .Mechanistic insights in the activation of oxygen on oxide catalysts for the oxidative dehydrogenation of ethane from pulse experiments and contact potential difference measurements[J].Journal of molecular catalysis, A. Chemical,2000(1):199-208.
[56] 张立德;牟季美.纳米材料和纳米结构[M].北京:科学出版社,2001:413-450.
[57] 董守安.纳米技术中的金元素[J].贵金属,2003(01):54-61.
[58] Okumura M;CoronadoJ M;Soria J et al.IEPR study of CO and O2 interaction with supported Au catalysts[J].Journal of Catalysis,2001,203:168-174.
[59] Markus M Schubert Stefan Hackenberg;Andre C van Veen;Martin Muhler et al.CO oxidation over supported gold catalysts-"inert" and "active" support materials and their role for the oxygen supply during reaction[J].Journal of Catalysis,2001,197:113-122.
[60] Zhengping Hao;Liangbo Fen;G.Q.Lu;Jianjun Liu;Lidun An;Hongli Wang .In situ electron paramagnetic resonance (EPR) study of surface oxygen species on Au/ZnO catalyst for low-temperature carbon monoxide oxidation[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2001(2):173-177.
[61] Tripathi A;Kamble V .Mgupen N Microcalorimetry, Adsorption and reaction studies of CO,O2 and CO+O2 over Au/Fe2O3,Fe2O3 and polycrystlline gold catalysts[J].Journal of Catalysis,1999,187:332-342.
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