[1] Gardner S D, Hoflund G B, Schryer D R, et al. Catalytic behavior of noble metal/reducible oxide materials for low-temperature carbon monoxide oxidation.1. Comparison of catalyst performance [J].Langmuir, 1991, 7(10):2135-2139
[2] 李巧霞,周小金,李金光,等. Pt-Ru合金薄膜的电沉积制备及其电化学表面增强红外吸收光谱 [J]. 物理化学学报, 2010, 26(6):1488-1492
[3] 刘英骏,张继军,李能,等.CO2对Cu-Ce-O催化剂催化氧化CO活性的影响 [J].物理化学学报, 1999,15(2):97-100
[4] Xia G G, Yin Y G, Willis W S, et al. Efficient stable catalysts for low temperature carbon monoxide oxidation [J]. J Catal,1999, 185(1):91-105
[5] Gac W. The influence of silver on the structural, redox and catalytic properties of the cryptomelane-type manganese oxides in the low-temperature CO oxidation reaction [J]. Appl Catal B:Environ, 2007, 75(1/2):107-117
[6] Bendahou K, Cherif L, Siffert S, et al. The effect of the use of lanthanum-doped mesoporous SBA-15 on the performance of Pt/SBA-15 and Pd/SBA-15 Catalysts for total oxidation of toluene [J]. Appl Catal A:Gener, 2008, 351(1):82-87
[7] Juan A C R, Marco A F, Heloise O P, et al. Methane combustion over Pd supported on MCM-41 [J]. Appl Catal B:Environ, 2007, 76(1/2):115-122
[8] Bi Y S, Liu J F, Lu G X. Studies of CO complete oxidation over Pd/NaZSM-5 supported catalyst [J]. Acta Chimca Sinica, 2002, 9(60):1624-1629
[9] Bi Y S, Liang C, Lu G X. Constructing surface active centres using Pd-Fe-O on zeolite for CO oxidation [J]. J Mol Catal A:Chem, 2007, 266(1/2):173-179
[10] Hu R R, Cheng Y, Xie L Y, et al. Effect of doped Ag on performance of manganese oxide octahedral molecular sieve for CO oxidation [J]. China J Catal, 2007,28(5):463-468
[11] Tang X F, Li Y G, Chen J L, et al. Synthesis, characterization,and catalytic application of titanium-cryptomelane nanorods/fibers [J]. Micro Meso Mater, 2007, 103 (1/3):250-256
[12] Wang Z M, Tezuka S, Kanoh H. Characterization of the structural and surface properties of a synthesized hydrous hollandite by gaseous molecular adsorption [J]. Chem Mater, 2001, 13(2):530-537
[13] Haruta M. Catalysis of gold nanoparticles deposited on metal oxides [J]. Cat Tech, 2002 6:102-115
[14] Carno J, Ferrandon M, Bjornbom E, et al. Mixed manganese oxide platinum catalysts for total oxidation of model gas from wood boilers [J]. Appl Catal A, 1997, 155: 265-281
[15] Chang Y F, McCarty J G. Novel oxygen storage components for advanced catalysts for emission control in natural gas fueled vehicles [J]. Catal Today, 1996, 30(1/3): 163-170
[16] Rynkowski J M, Paryjczak T, Lenik M. Characterization of alumina supported nickel- ruthenium systems [J]. Appl Catal A, 1995,126 (2): 257-271
[17] Xu R, Wang X, Wang D, et al. Surface structure effects in nanocrystal MnO2 and Ag/MnO2 catalytic oxidation of CO [J]. J Catal, 2006, 237: 426-430
[18] Requies J, Alvarez-Galvan M C, Barrio V L, et al. Palladium-manganese catalysts supported on monolith systems for methane combustion [J]. Appl Catal B:Environ, 2008, 79(2):122-131
[19] Luo J Y, Meng M, Yao J S, et al. One-step synthesis of nanostructured Pd-doped mixed oxides MOx-CeO2 (M=Mn, Fe, Co, Ni, Cu) for efficient CO and C3H8 total oxidation[J]. Appl Catal B:Environ,2009, 87(1/2):92-103
[20] Salker A V, Kunkalekar R K. Palladium doped manganese dioxide catalysts for low temperature carbon monoxide oxidation [J].Catal Comm, 2009, 10(13):1776-1780
[21] Chen X, Shen Y F, Suib S L, et al. Characterization of manganese oxide octahedral molecular sieve (M-OMS-2) materials with different metal cation dopants [J]. Chem Mater, 2002, 14(2): 940-948
[22] Krishnan V V, Suib S L. Oxidative dehydrogenation of 1-butene over manganese oxide octahedral molecular sieves [J]. J Catal, 1999, 184(2):305-315
[23] O'Shea V A, Alvarez-Galvan M C, Requies J, et al. Synergistic effect of Pd in methane combustion PdMnOx/Al2O3 catalyst [J]. Catal Comm, 2007, 8(8):1287-1292