衣宝廉(Yi B L). 燃料电池:原理技术应用(Fuel Cell: Principle, technology and application).北京:化学工业出版社(Beijing: Chemical Industry Press),2003.
[2]
US. D. o. Energy, 2013 Fuel Cell Technologies Market Report. 2014, http://energy.gov/sites/prod/files/2014/11/f19/fcto_2013_market_report.pdf.
[3]
US. D. o. Energy, Multi-Year Research, Development and Demonstration Plan, 3.4: Technical Plan Fuel Cells. 2012, http://energy.gov/sites/prod/files/2014/12/f19/fcto_myrdd_fuel_cells.pdf
[4]
Kakati N, Maiti J, Lee S H, Jee S H, Viswanathan B, Yoon Y S. Chem. Rev., 2014, 114: 12397.
[5]
Tiwari J N, Tiwari R N, Singh G, Kim K S. Nano Energy, 2013, 2: 553.
[6]
Thomas S C, Ren X, Gottesfeld S, Zelenay P. Electrochim. Acta, 2002, 47: 3741.
[7]
Li X, Faghri A. J. Power Sources, 2013, 226: 223.
[8]
Wen Z H, Juan L, Li J H. Adv. Mater., 2008, 20: 743.
[9]
Wu J B, Yang H. Acc. Chem. Res., 2013, 46: 1848.
[10]
Kakati N, Maiti J, Lee S H, Jee S H, Viswanathan B, Yoon Y S. Chem. Rev., 2014, 114: 12397.
[11]
Lamy C, Léger J M, Srinivasan S. Modern Aspects of Electrochemistry, NY: Plenum Publisher, 2001. 34.
[12]
Barnett C J, Burstein G T, Kucernak A R J, Williams K R. Electrochim. Acta, 1997, 42: 2381.
[13]
Joo J B, Kim J S, Kim P, Yi J. Mater. Lett., 2008, 62: 3497.
[14]
Guil-López R, Martinez-Huerta M V, Guillen-Villafuerte O, Pena M A, Fierro J L G, Pastor E. Int. J. Hydrogen Energy, 2010, 35: 7881.
[15]
Zhang X F, Shen P K. Int. J. Hydrogen Energy, 2013, 38: 2257.
[16]
Leevy R B, Boudart M. Science, 1973, 181: 547.
[17]
Zellner M B, Chen J G. Catal. Today, 2005, 99: 299.
[18]
Mellinger Z J, Kelly T G, Chen J G. ACS Catal., 2012, 2: 751.
[19]
Yaldagard M, Jahanshahi M, Seghatoleslami N. Appl. Surf. Sci., 2014, 317: 496.
[20]
Xu C, Shi M, Kang L, Ma C. Mater. Lett., 2013, 15: 183.
[21]
Wu J, Zhang J, Peng Z, Yang S, Wagner F T, Yang H. J. Am. Chem. Soc., 2010, 132: 4984.
[22]
Lim B, Jiang M, Camargo P H C, Cho E C, Tao Z, Lu X, Zhu Y, Xia Y. Science, 2009, 324: 1302.
[23]
Xiong L, Kreidler E, He T. ECS Trans., 2006, 1: 69.
[24]
Shao M, Shoemaker K, Peles A, Kaneko K, Protsailo L. J. Am. Chem. Soc., 2010, 132: 9253.
[25]
Oezaslan M, Hasché F, Strasser P. J. Electrochem. Soc., 2012, 159: B444.
[26]
Holt-Hindle P, Yi Q, Wu G, Koczkur K, Chen A. J. Electrochem. Soc., 2008, 155: K5.
[27]
Jeon M K, Zhang Y, McGinn P J. Electrochim Acta, 2010, 55: 5318.
[28]
Salgado J R C, Antolini E, Gonzalez E R. Appl. Catal. B-Environ., 2005, 57: 283.
[29]
Stamenkovic V R, Fowler B, Mun B S, Wang G, Ross P N, Lucas C A, Markovi D? 1 N M. Science, 2007, 315: 493.
[30]
Yang C C, Hsu S T, Chien W C, Shih M C, Chiu S J, Lee K T, Wang C L. Int. J. Hydrogen Energy, 2006, 31: 2076.
[31]
Liu L, Pippel E. Angew. Chem. Int. Ed., 2011, 50: 2729.
[32]
Dai Y, Ou L, Liang W, Yang F, Liu Yu, Chen S. J. Phys. Chem. C, 2011, 115: 2162.
[33]
Stamenkovic V R, Mun B S, Mayrhofer K J J, Ross P N, Markovic N M. J. Am. Chem. Soc., 2006, 128: 8813.
[34]
Scott K, Yuan W, Cheng H. J. Appl. Electrochem., 2007, 37: 21.
[35]
Guo S, Li, Zhu H, Zhang S, Markovic N M, Stamenkovic V R, Sun S. Angew. Chem. Int. Ed., 2013, 52: 3465.
[36]
Koenigsmann C, Santulli A C, Gong K, Vukmirovic M B, Zhou W P, Sutter E, Wong S S, Adzic R R. J. Am. Chem. Soc., 2011, 133: 9783.
[37]
Kuttiyiel K A, Sasaki K, Choi Y M, Su D, Liu, P, Adzic R R. Nano Lett., 2012, 12: 6266.
[38]
Kuttiyiel K A, Sasaki K, Choi Y M, Su D, Liu, P, Adzic R R. Energy Environ. Sci., 2012, 5: 5297.
[39]
Yang H. Angew. Chem. Int. Ed., 2011, 50: 2674.
[40]
Han L, Liu H, Cui P, Peng Z, Zhang S, Yang J. Sci. Rep., 2014, 4: 6414.
[41]
Lee C L, Huang K L, Tsai Y L, Chao Y J. Electrochem. Commun., 2013, 34: 282.
[42]
Chen C, Kang Y, Huo Z, Zhu Z, Huang W, Xin H L, Snyder J D, Li D, Herron J A, Mavrikakis M, Chi M, More K L, Li Y, Markovic N M, Somorjai G A, Yang P, Stamenkovic V R. Science, 2014, 343: 1339.
[43]
Wang H, Liang J, Zhu L, Peng F, Yu H, Yang J. Fuel Cells, 2010, 10:99.
[44]
Song W, Chen Z, Yang C, Yang Z, Tai J, NanY, Lu H. J. Mater. Chem. A, 2015,3: 1049.
[45]
Han X, Cheng F, Zhang T, Yang J, Hu Y, Chen J. Adv Mater., 2014, 26, 2047.
[46]
Gong K, Du F, Xia Z, Durstock M, Dai L. Science, 2009, 323: 760.
[47]
Liu R, Wu D, Feng X, Müllen K. Angew. Chem. Int. Ed., 2010, 49: 2565.
[48]
Shanmugam S, Osaka T. Chem. Commun., 2011, 47: 4463.
[49]
Wang Z, Jia R, Zheng J, Zhao J, Li L, Song J, Zhu Z, ACS Nano, 2011, 5: 1677.
[50]
Zheng Y, Jiao Y, Jaroniec M, Jin Y, Qiao S Z. Small, 2012, 8: 3550.
[51]
Yang L, Jiang S, Zhao Y, Zhu L, Chen S, Wang X, Wu Q, Ma J, Ma Y, Hu Z. Angew. Chem. Int. Ed., 2011, 50: 7132.
[52]
Liu Z W, Peng F, Wang H J, Yu H, Zheng W X, Yang J. Angew. Chem. Int. Ed., 2011, 50: 3257.
[53]
Byeon A, Lee J W. J. Phys. Chem. C, 2013, 117: 24167.
[54]
Jasinski R. Nature, 1964, 201: 1212.
[55]
Jahnke H, Schijnbron M, Zimmerman G. Top. Curr. Chem., 1976, 61: 133.
[56]
Ramaswamy N, Tylus U, Jia Q, Mukerjee S. J. Am. Chem. Soc., 2010, 135: 15443.
[57]
Li Z, Li G, Jiang L, Li J, Sun G, Xia C, Li F. Angew. Chem. Int. Ed., 2015, 54: 1494.
[58]
Lefevre M, Proietti E, Jaouen F, Dodelet J P. Science, 2009, 324: 71.
[59]
Wu G, Chen Z, Artyushkova K, Garzon F H, Zelenay P. ECS Trans. 2008, 16: 159.
[60]
Zhao Y, Watanabe K, Hashimoto K. J. Am. Chem. Soc., 2012, 134: 19528.
[61]
Wu G, More K L, Johnston C M, Zelenay P. Science, 2011, 332: 443.
[62]
Zhu J, Cheng F Y, Tao Z L, Chen J. J. Phys. Chem. C, 2008, 112: 6337.
[63]
Hamel C, Garbarino S B, Irissou E R, Bichat M P, Guay D. J. Phys. Chem. C, 2010, 114: 18931.
[64]
Lee E P, Peng Z, Chen W, Chen S, Yang H, Xia Y. ACS Nano, 2008, 2: 2167.
[65]
Song Y, Garcia R M, Dorin R M, Wang H, Qiu Y, Coker E N, Steen W A, Miller J E, Shelnutt J A. Nano Lett., 2007, 7: 3650.
[66]
Górzny M ?, Walton A S, Evans S D. Adv. Funct. Mater., 2010, 20: 1295.
[67]
Shin T Y, Yoo S H, Park S. Chem. Mater., 2008, 20: 5682.
[68]
Ghosh S, Raj C R. J. Phys. Chem. C, 2010, 114: 10843.
[69]
Zhang H, Zhou W, Du Y, Yang P, Wang C. Electrochem. Commun., 2010, 12: 882.
[70]
Yoo S J, Jeon T Y, Kim K S, Lim T H, Sung Y E. Phys. Chem. Chem. Phys., 2010, 12: 15240.
[71]
Peng Z, You H, Wu J, Yang H. Nano Lett., 2010, 10: 1492.
[72]
Yin A X, Min X Q, Zhu W, Liu W C, Zhang Y W, Yan C H. Chem. Eur. J., 2012, 18: 777.
[73]
Wu G, Swaidan R, Li D, Li N. Electrochim. Acta, 2008, 53: 7622.
[74]
Wei Z, Guo H, Tang Z. J. Power Sources, 1996, 58: 239.
[75]
Chiou Y J, Hsu H J, Lin H M, Liou W J, Liou H W, Wu S H, Chien S H. Particuology, 2011, 9: 522.
[76]
Abe H, Matsumoto F, Alden L R, Warren S C, Abrun H D, DiSalvo F J. J. Am. Chem. Soc., 2008, 130: 5452.
[77]
Li X, Chen G, Xie J, Zhang L, Xia D, Wu Z. J. Electrochem. Soc., 2010, 157: B580.
[78]
Wang Z B, Yin G P, Lin Y G. J. Power Sources, 2007, 170: 242.
[79]
Jeon M K, Won J Y, Lee K R, Woo S I. Electrochem. Commun., 2007, 9: 2163.
[80]
Xu J B, Hua K F, Sun G Z, Wang C, Lv X Y, Wang Y. J. Electrochem. Commun., 2006, 8: 982.
[81]
Chen Z, Waje M, Li W, Yan Y. Angew. Chem. Int. Ed., 2007, 46: 4060.
[82]
Choi S M, Kim J H, Jung J Y, Yoon E Y, Kim W B. Electrochim. Acta, 2008, 53: 5804.
[83]
Watanabe M, Motoo S. J. Electroanal. Chem., 1975, 60: 267.
[84]
Koper M T, Shubina T E, Santen R A. J. Phys. Chem. B, 2002, 106: 691.
[85]
Alayoglu S, Zavalij P, Eichhorn B, Wang Q, Frenkel A I, Chupas P. ACS Nano, 2009, 3: 3127.
[86]
Mpourmpakis G, Andriotis A N, Vlachos D G. Nano Lett., 2010, 10: 1041.
[87]
Wang D, Zhuang L, Lu J T. J. Phys. Chem. C, 2007, 111: 16416.
[88]
Watanabe M, Zhu Y M, Uchida H. J. Phys. Chem. B, 2000, 104: 1762.
[89]
Wang D Y, Chou H L, Lin Y C, Lai F J. J. Am. Chem. Soc., 2012, 134: 10011.
[90]
Liang Y M, Zhang H M, Zhong H X, Zhu X B, Tian Z Q, Xu D Y, Yi B L. J. Catal., 2006, 238: 468.
[91]
Zeng J H, Lee J Y. Int. J. Hydrogen Energy, 2007, 32: 4389.
[92]
Jeon M K, Zhang Y, McGinn P. J. Electrochim. Acta, 2009, 59: 2837.
[93]
Zhang L F, Zhong S L, Xu A W. Angew. Chem. Int. Ed., 2013, 52: 645.
[94]
Liu Z L, Zhang X H, Hong L. Electrochem. Commun., 2009, 11: 925.
[95]
Zhang J, Liu P, Ma H, Ding Y. J. Phys. Chem. C, 2007, 111: 10382.
[96]
Yin Z, Zhang Y, Chen K, Li J, Li W, Tang P, Zhao H, Zhu Q, Bao X, Ma D. Sci. Rep., 2014, 4: 4288.
[97]
Abdel Hameed R M, El-Khatib K M. Int. J. Hydrogen Energy, 2010, 35: 2517.
[98]
Hays C C, Manoharan R, Goodenough J B. J. Power Sources, 1993, 45: 291.
[99]
Tharamani C N, Mayanna S M. Electrochem. Solid-State Lett., 2006, 9: A412.
[100]
Hoor F S, Tharamani C N, Ahmed M F, Mayanna S M. J. Power Sources, 2007, 167: 18.
[101]
Yu H C, Fung K Z, Guo T C, Chang W L. Electrochim. Acta, 2004, 50: 811.
[102]
Deshpandea, Mukasyanb A, Varma A. J. Power Sources, 2006, 158: 60.
[103]
Singh R N, Sharma T, Singh A, Anindita, Mishra D, Tiwari S K. Electrochim. Acta, 2008, 53: 2322.
[104]
Hosseini M G, Momeni M M, Faraji M. Electroanalysis, 2010, 22: 2620.
[105]
Zhao Y C, Nie S L, Wang H W, Tian J N, Ning Z, Li X X. J. Power Sources, 2012, 218: 320.
[106]
Samant P V, Fernandes J B. J. Power Sources, 1999, 79: 114.
[107]
Zhao Y C, Nie S L, Wang H W, Tian J N, Ning Z, Li X X. J. Power Sources, 2012, 218: 320.
[108]
Kudo T, Kawamura G, Okamoto H. J. Electrochem. Soc., 1983, 130: 1491.
[109]
Jones S H, Walker D K. J. Electrochem. Soc., 1987, 137: 1653.
[110]
Lin L, Zhu Q, Xu A W. J. Am. Chem. Soc., 2014, 136: 11027.
[111]
Alonso-Vante N, Malakhov I V, Nikitenko S G, Savinova E R, Kochubey D I. Electrochim. Atca, 2002, 47: 3807.
[112]
Alonso-Vante N, Tributsch H. Nature, 1986, 323: 431.
[113]
Alonso-Vante N, Jaegermann W, Tributsch H, Hoenle W, Yvon K. J. Am. Chem. Soc., 1987, 109: 3251.
[114]
Solorza-Feria O, Ellmer K, Gierstig M, Alonso-Vante N. Electrochim. Atca, 1994, 39: 1647.
[115]
Lee J W, Popov B N. J. Solid State Electrochem., 2007, 11: 1355.
[116]
Ozenler S S, Kadrgan F. J. Power Sources, 2006, 154: 364.
[117]
Susac D, Sode A, Zhu L A. Wong P C, Teo M, Bizzotto D, Mitchell K A R, Parsons R R, Campbell S A. J. Phys. Chem., 2006, 110: 10762.
[118]
Lee K, Zhang L, Zhang J. Electrochem. Commun., 2007, 9: 707.
[119]
Feng Y, He T, Alonso-Vante N. Electrochim. Atca., 2009, 54: 5252.
[120]
Chen Y, Wang J, Liu H, Banis M N, Li R, Sun X, Sham T K, Ye S, and Knights S. J. Phys. Chem. C, 2011, 115: 3769.
[121]
Liu Y, Mustain W E. J. Am. Chem. Soc., 2013, 135: 530.
[122]
Zhang K, Yang W, Ma C, Wang Y, Sun C, Chen Y, Duchesne P, Zhou J, Wang J, Hu Y, Banis M N, Zhang P, Li F, Li J, Chen L. NPG Asia Mater., 2015, 7: e153.
[123]
Strike D J, De Rooij N F, Koudelka-Hep M, Ulmann M, Augustynski J. J. Appl. Electrochem., 1992, 22: 922.
[124]
Laborde H, Leger J M, Lamy C. J. Appl. Electrochem., 1994, 24: 219.