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催化学报  2011 

光催化还原CO2的研究现状和发展前景

DOI: 10.3724/SP.J.1088.2011.10509, PP. 1565-1572

Keywords: 光催化,二氧化碳,还原,碳氢化合物

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Abstract:

?综述了光催化还原CO2的研究进展,并重点介绍了本课题组在光催化还原CO2为碳氢燃料方面的研究工作,通过该途径可降低CO2在大气中的排放浓度,还可将CO2转化为烷烃、醇或其它有机物质,从而实现碳材料的再循环使用.最后展望了该研究领域的前景.

References

[1]  ingh D, Croiset E, Douglas P L, Douglas M A. Energy Converse Manage, 2003, 44: 3073
[2]  ao A B, Rubin E S. Environ Sci Technol, 2002, 36: 4467
[3]  hite C M, Strazisar B R, Granite E J, Hoffman J S, Pennline H W. J Air Waste Manage Assoc, 2003, 53: 645
[4]  oormeij D A, Simandl G J. Geosci Canada, 2004, 31: 11
[5]  ndrakanti V P, Kubicki J D, Schobert H H. Energy Envir Sci, 2009, 2: 745
[6]  oy S C, Varghese O K, Paulose M, Grimes C A. ACS Nano, 2010, 4: 1259
[7]  almisano G, García-López E, MarcíG, Loddo V, Yurdakal S, Augugliaro V, Palmisano L. Chem Commun, 2010, 46: 7074
[8]  offmann M R, Moss J A, Baum M M. Dalton Trans, 2011, 40: 5151
[9]  almann M. Nature, 1978, 275: 115
[10]  Inoue T, Fujishima A, Konishi S, Honda K. Nature, 1979, 277: 637
[11]  Halmann M, Ulman M, Aurian-Blajeni B. Solar Energy, 1983, 31: 429
[12]  Anpo M, Yamashita H, Ichihashi Y, Fujii Y, Honda M. J Phys Chem B, 1997, 101: 2632
[13]  Ikeue K, Yamashita H, Anpo M, Takewaki T. J Phys Chem B, 2001, 105: 8350
[14]  Ikeue K, Nozaki S, Ogawa M, Anpo M. Catal Today, 2002, 74: 241
[15]  Ishitani O, Inoue H, Suzuki Y, Ibusuki T. J Photochem Photobiol A, 1993, 72: 269
[16]  Tseng I H, Wu J C S, Chou H Y. J Catal, 2004, 221: 432
[17]  Liu B J, Torimoto T, Matsumoto H, Yoneyama H. J Photochem Photobiol A, 1997, 108: 187
[18]  Wang C, Thompson R L, Baltrus J, Matranga C. J Phys Chem Lett, 2010, 1: 48
[19]  Woolerton T W, Sheard S, Reisner E, Pierce E, Ragsdale S W, Armstrong F A. J Am Chem Soc, 2010, 132: 2132
[20]  徐用军, 周定, 姜琳琳, 李向久, 刘崇微, 刘金尧. 哈尔滨工业大学学报 (Xu Y J, Zhou D, Jiang L L, Li X J, Liu Ch W, Liu J Y. J Harbin Inst Technol), 2000, 32: 104
[21]  陈崧哲, 钟顺和, 肖秀芬. 催化学报 (Chen S Zh, Zhong Sh H, Xiao X F. Chin J Catal), 2003, 24: 67
[22]  赵春, 钟顺和. 应用化学 ( Zhao Ch, Zhong Sh H. Chin J Appl Chem), 2005, 22: 349
[23]  Liu Y Y, Huang B B, Dai Y, Zhang X Y, Qin X Y, Jiang M H, Whangbo M H. Catal Commun, 2009, 11: 210
[24]  Yang C C, Yu Y H, van der Linden B, Wu J C S, Mul G. J Am Chem Soc, 2010, 132: 8398
[25]  Zhao Z H, Fan J M, Wang Z Z. J Clean Prod, 2007, 15: 1894
[26]  Zhao Z H, Fan J M, Xie M M, Wang Z Z. J Clean Prod, 2009, 17: 1025
[27]  Zou Z, Ye J H, Sayama K, Arakawa H. Nature, 2001, 414: 625
[28]  Vijayakumar K M, Lichtin N N. J Catal, 1984, 90: 173
[29]  Matsumoto Y, Obata M, Hombo J. J Phys Chem, 1994, 98: 2950
[30]  Nguyen T V, Wu J C S. Appl Catal A, 2008, 335: 112
[31]  Xi G C, Ouyang S X, Ye J H. Chem Eur J, 2011, 17: 9057
[32]  Liu Q, Zhou Y, Kou J H, Chen X Y, Tian Z P, Gao J, Yan S C, Zou Z G. J Am Chem Soc, 2010, 132: 14385
[33]  Yan S C, Wan L J, Li Z S, Zou Z G. Chem Commun, 2011, 47: 5632
[34]  Lü J, Kako T, Zou Z G, Ye J H. J Mater Res, 2010, 25: 159
[35]  Lü J, Kako T, Zou Z G, Ye J H. Appl Phys Lett, 2009, 95: 032107
[36]  Kudo A, Hijii S. Chem Lett, 1999: 1103
[37]  Tang J W, Zou Z G, Ye J H. Catal Lett, 2004, 92: 53
[38]  Liu Y Y, Huang B B, Dai Y, Zhang X Y, Qin X Y, Jiang M H, Whangbo M H. Catal Commun, 2009, 11: 210
[39]  Zou X D, Conradsson T, Klingstedt M, Dadachov M S, O’Keeffe M. Nature, 2005, 437: 716
[40]  Zhou Y, Zhu H, Chen Z, Chen M, Xu Y, Zhang H, Zhao D. Angew Chem, Int Ed, 2001, 40: 2166 3.0.CO;2-C target="_blank">
[41]  Kim S S, Park J Y, Kim H S, Na H G, Yang J C, Shim S H, Lee C, Park D, Nam D, Cheong H, Kim H W. J Phys D, 2011, 44: 025502
[42]  Li L, Lee P S, Yan C, Zhai T, Fang X, Liao M, Koide Y, Bando Y, Golberg D. Adv Mater, 2010, 22: 5145
[43]  Su Y, Li S, Xu L, Chen Y Q, Zhou Q T, Peng B, Yin S, Meng X, Liang X M, Feng Y. Nanotechnology, 2006, 17: 6007
[44]  Yan C, Zhang T, Lee P S. Cryst Growth Des, 2008, 8: 3144
[45]  Zhan J H, Bando Y, Hu J Q, Yin L W, Yuan X L, Sekiguchi T, Golberg D. Angew Chem, Int Ed, 2006, 45: 228
[46]  Yan C, Singh N, Lee P S. Cryst Growth Des, 2009, 9: 3697
[47]  Yan C, Lee P S. J Phys Chem C, 2009, 113: 14135
[48]  Li C, Bando Y, Liao M Y, Koide Y, Golberg D. Appl Phys Lett, 2010, 97: 161102
[49]  Yan C, Singh N, Lee P S. Appl Phys Lett, 2010, 96: 053108
[50]  Yamashita H, Ikeue K, Takewaki T, Anpo M. Top Catal, 2002, 18: 95
[51]  Dimitrijevic N M, Vijayan B K, Poluektov O G, Rajh T, Gray K A, He H, Zapol P. J Am Chem Soc, 2011, 133: 3964
[52]  Varghese O K, Paulose M, LaTempa T J, Grimes C A. Nano Lett, 2009, 9: 731
[53]  Ozcan O, Yukruk F, Akkaya E U, Uner A D. Appl Catal B, 2007, 71: 291
[54]  Nguyen T V, Wu J C S, Chiou C H. Catal Commun, 2008, 9: 2073
[55]  Cao L, Sahu S, Anilkumar P, Bunker C E, Xu J, Shiral Fernando K A, Wang P, Guliants E A, Tackett K N, Sun Y P. J Am Chem Soc, 2011, 133: 4754
[56]  Pan P W, Chen Y W. Catal Commun, 2007, 8: 1546
[57]  Gao F, Chen X Y, Yin K B, Dong S, Ren Z F, Yuan F, Yu T, Zou Z G, Liu J M. Adv Mater, 2007, 19: 2889
[58]  Lü J, Kako T, Li Z S, Zou Z G, Ye J H. J Phys Chem C, 2010, 114: 6157
[59]  Kou J H, Gao J, Li Z S, Zou Z G. Curr Org Chem, 2010, 14: 728
[60]  Fan X X, Gao J, Wang Y, Li Z S, Zou Z G. J Mater Chem, 2010, 20: 2865
[61]  Liu G, Zheng S, Yang G. Angew Chem, Int Ed, 2007, 46: 2827
[62]  Lin Z E, Yang G Y. Eur J Inorg Chem, 2010, 19: 2895 and the references therein
[63]  Sato J, Kobayashi H, Ikarashi K, Saito N, Nishiyama H, Inoue Y. J Phys Chem B, 2004, 108: 4369
[64]  Huang J H, Cui Y J, Wang X C. Environ Sci Technol, 2010, 44: 3500
[65]  Ma B J, Wen F Y, Jiang H F, Yang J H, Ying P L, Li C. Catal Lett, 2010, 134: 78
[66]  Xia Y N, Yang P D, Sun Y G, Wu Y Y, Mayers B, Gates B, Yin Y D, Kim F, Yan Y Q. Adv Mater, 2003, 15: 353
[67]  Tsai M Y, Yu C Y, Wang C C, Perng T P. Cryst Growth Des, 2008, 8: 2264
[68]  Huang J H, Ding K N, Hou Y D, Wang X C, Fu X Z. Chem-SusChem, 2008, 1: 1011
[69]  Huang J H, Wang X C, Hou Y D, Chen X F, Wu L, Fu X Z. Environ Sci Technol, 2008, 42: 7387
[70]  Song R Q, Xu A W, Yu S H. J Am Chem Soc, 2007, 129: 4152
[71]  Wan Y, Zhao D Y. Chem Rev, 2007, 107: 2821
[72]  Yan S C, Ouyang S X, Gao J, Yang M, Feng J Y, Fan X X, Wan L J, Li Z S, Ye J H, Zhou Y, Zou Z G. Angew Chem, Int Ed, 2010, 49: 6400
[73]  Pichon A. Energy materials: A stretch to save the world. http://www.nature.com/nchina/2010/101103/full/nchina.2010.126.html

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