English
新闻公告
More
化学进展 2008, Vol. 20 Issue (12): 2083-2092 前一篇   

• 综述与评论 •

直接甲醇燃料电池的交流阻抗谱分析*

齐亮 谢晓峰** 金宝舵 郭建伟 徐景明   

  1. ( 清华大学核能与新能源技术研究院 北京 100084)

  • 收稿日期:2008-01-10 修回日期:1900-01-01 出版日期:2008-12-24 发布日期:2008-12-25
  • 通讯作者: 谢晓峰

AC Impedance Spectroscopy in DMFC diagnosis

Qi Liang; Xie Xiaofeng**; Jin Baoduo; Guo Jianwei; Xu Jingming

  

  1. (Institute of Nuclear and New Energy Technology, Beijing 100084, China)
  • Received:2008-01-10 Revised:1900-01-01 Online:2008-12-24 Published:2008-12-25
  • Contact: Xie Xiaofeng
由于能够提供比直流测试方法更为丰富的信息,交流阻抗图谱近些年被广泛的用于直接甲醇燃料电池的研究中。同PEMFC相比,直接甲醇燃料电池具有更为复杂的电极体系。本文通过对交流阻抗技术在直接甲醇燃料电池领域应用的几个关键技术问题的分析,并按照阻抗分析过程的具体的实施步骤加以组织,结合具体的应用实例以阐述交流阻抗谱在直接甲醇燃料电池的各个应用方面,包括电池的原位极化分析,反应机理的剖析,材料性能评估等。
Because the AC impedance spectroscopy, also called as electrochemical impedance spectroscopy(EIS), can provide more detailed information than other impedance measurement methods, it becomes the most popular method for the research on the fuel cell and is being used widely in the fuel cell research field recently. The paper mainly deals with the all aspects of application in DMFC field including in-situ polarization analyst, reaction mechanism details, material performance evaluation, etc. Several key technical problems about EIS including electrochemical system establishment, the reference electrode selection, the equivalent-circuits model for analysis for spectroscopy are discussed.

中图分类号: 

()

[1 ] 齐亮(Qi L) , 谢晓峰(Xie X F) , 徐景明(Xu J M) 等. 化学进展(Progress in Chemistry) , 2006 , 18 (12) : 1725 —1734
[2 ] Liu Y, Xie X F , Shang Y M, et al . J . Power Sources , 2007 , 164(1) : 322 —327
[3 ] Liu H , Song C , Zhang L , et al . J . Power Sources , 2006 , 155(2) : 95 —110
[4 ] Tominaka S , Akiyama N , Momma T, et al . J . Electrochem.Soc. , 2007 , 154 (9) : 902 —909
[5 ] Wasmus S , Kuever A. J . Electroanaly. Chem. , 1999 , 461 (1/2) : 14 —31
[6 ] Neburchilov V , Martin J , Wang H , et al . J . Power Sources ,2007 , 169 (2) : 221 —238
[7 ] Deluca N W, Elabd Y A. J . Polymer Sci . Part B : Polymer Physics , 2006 , 44 (16) : 2201 —2225
[8 ] Kundu P P , Sharma V , Shul Y G. Critical Reviews in Solid Stateand Materials Sciences , 2007 , 32 (1P2) : 51 —66
[9 ] Hikita S , Yamane K, Nakajima Y. JSAE Rev. , 2002 , 23 (1) :133 —135
[10] Ye F , Chen S Z, Dong X F , et al . Modern Chemical Industry ,2005 , 25 (9) : 30 —33
[11] Yang H , Zhao T S. Electrochim. Acta , 2005 , 50 ( 16/17 ) :3243 —3252
[12] Xu C , Zhao T S. Electrochem. Commun. , 2007 , 9 (3) : 497 —503
[13] Smith M, Cooper K, Johnson D , et al . Fuel Cells , 2005 , 5 (2) :26 —31
[14] Cooper K R , Smith M. J . Power Sources , 2006 , 160 (2 SPECISS) : 1088 —1095
[15] Abe T, Shima H , Watanabe K, et al . J . Electrochem. Soc. ,2004 , 151 (1) : 101 —105
[16] Rubio M A , Urquia A , Dormido S. J . Power Sources , 2007 , 171(2) : 670 —677
[17] Harper J , Rust M, Sayers B , et al . in : Solartron Analy. Tech.Bulletin. Farnborough , UK. TBPanalyticalP001. 2004
[18] Buchi F N , Scherer G G. J . Electroanaly. Chem. , 1996 , 404(1) : 37 —43
[19] Schiewe J , Hazi J , Vicente-Beckett V A , et al . J . Electroanaly.Chem. , 1998 , 451 (1P2) : 129 —138
[20] Norlin A , Pan J , Leygraf C. Electrochim. Acta , 2004 , 49 (22/23SPEC ISS) : 4011 —4020
[21] 曹楚南(Cao C N) , 张鉴清(Zhang J Q) . 电化学阻抗谱导论( Introduction of Electrochemical Impedance Spectroscopy) . 北京:科学出版社(Beijing : Science Press) , 2002
[22] Lai C M, Lin J C , Hsueh KL , et al . International J . Hydrogen Energy , 2007 , 32 (17) : 4381 —4388
[23] Barsoukov E. Impedance Spectroscopy Theory , Experiment , and Applications. 2nd ed. New Jersey : John Wiley & Sons , Inc. ,2005. 595
[24] Ren X, Springer T E , Gottesfeld S. J . Electrochem. Soc. ,2000 , 147 (1) : 92 —98
[25] Mueller J T, Urban P M, Hoelderich W F. J . Power Sources ,1999 , 84 (2) : 157 —160
[26] Amphlett J C , Peppley B A , Halliop E , et al . J . Power Sources ,2001 , 96 (2) : 204 —213
[27] Easton E B , Pickup P G. Electrochim. Acta , 2005 , 50 (12) :2469 —2474
[28] Li G, Pickup P G. J . Electrochem. Soc. , 2003 , 150 ( 11) :745 —752
[29] Lefebvre MC , Martin R B , Pickup P G. Electrochem. Solid-State Lett . , 1999 , 2 (6) : 259 —261
[30] Ren X, Pickup P G. Electrochim. Acta , 2001 , 46 ( 26/27) :4177 —4183
[31] Saab A P , Garzon F H , Zawodzinski TA. J . Electrochem. Soc. ,2002 , 149 (12) : 1541 —1546
[32] Springer T E , Zawodzinski T A , Wilson M S , et al . J .Electrochem. Soc. , 1996 , 143 (2) : 587 —599
[33] Boillot M, Bonnet C , Didierjean S , et al . J . App.Electrochem. , 2007 , 37 (1) : 103 —110
[34] Boillot M, Bonnet C , Jatroudakis N , et al . Fuel Cells , 2006 , 6(1) : 31 —37
[35] Wagner N. J . Appl . Electrochem. , 2002 , 32 (8) : 859 —863
[36] Sone Y, Ekdunge P , Simonsson D. J . Electrochem. Soc. , 1996 ,143 (4) : 1254 —1259
[37] He W, Van N T. J . Electrochem. Soc. , 2004 , 151 (2) : 185 —195
[38] Winkler J , Hendriksen P V , Bonanos N , et al . J . Electrochem.Soc. , 1998 , 145 (4) : 1184 —1192
[39] Adler S B. J . Electrochem. Soc. , 2002 , 149 (5) : 166 —172
[40] Adler S B , Henderson B T, Wilson M A , et al . Solid State Ionics , 2000 , 134 (1P2) : 35 —42
[41] Harrington D A , Conway B E. Electrochim. Acta , 1987 , 32(12) : 1703 —1712
[42] Diard J P , Glandut N , Landaud P , et al . Electrochim. Acta ,2003 , 48 (5) : 555 —562
[43] Kuhn H , Andreaus B , Wokaun A , et al . Electrochim. Acta ,2006 , 51 (8) : 1622 —1628
[44] Li G, Pickup P G. Electrochim. Acta , 2004 , 49 (24) : 4119 —4126
[45] Foulkes F R , Graydon W F , Garamszeghy M. J . Electrochem.Soc. , 1984 , 131 (6) : 1325 —1332
[46] Kirk D W, Foulkes F R. J . Electrochem. Soc. , 1984 , 131 (6) :1332 —1336
[47] Abe T, Shima H , Watanabe K, et al . J . Electrochem. Soc. ,2004 , 151 (1) : 101 —105
[48] Romero-Castanon T, Arriaga L G, Cano-Castillo U. J . Power Sources , 2003 , 118 : 179 —182
[49] Yuan X, Sun C , Blanco M, et al . J . Power Sources , 2006 , 161(2) : 920 —937
[50] Melnick R E , Palmore G T R. J . Phys. Chem. B , 2001 , 105(5) : 1012 —1025
[51] Melnick R E , Palmore G T R. J . Phys. Chem. B , 2001 , 105(39) : 9449 —9457
[52] Hsing I M, Wang X, Leng YJ . J . Electrochem. Soc. , 2002 ,149 (5) : A615 —A621
[53] Lee J , Eickes C , Eiswirth M, et al . Electrochim. Acta , 2002 ,47 (13/14) : 2297 —2301
[54] Mueller J T, Urban P M. J . Power Sources , 1998 , 75 (1) : 139 —143
[55] Furukawa K, Okajima K, Sudoh M. J . Power Sources , 2005 ,139 (1/2) : 9 —14
[56] Piela P , Fields R , Zelenay P. J . Electrochem. Soc. , 2006 , 153(10) : A1902 —A1913
[57] Chakraborty D , Chorkendorff I , Johannessen T. J . Power Sources , 2006 , 162 (2 SPEC ISS) : 1010 —1022
[58] Chakraborty D , Chorkendorff I , Johannessen T. J . Power Sources , 2007 , 173 (1) : 110 —120
[59] Ciureanu M, Wang H. J . Electrochem. Socs , 1999 , 146 (11) :4031 —4040
[60] Ciureanu M, Wang H , Qi Z. J . Phys. Chem. B , 1999 , 103(44) : 9645 —9657
[61] Eikerling M, Kornyshev A A. J . Electroanaly. Chem. , 1999 ,475 : 107 —123
[62] Wu X, Ma H , Chen S , et al . J . Electrochem. Soc. , 1999 , 146(5) : 1847 —1853
[63] Du C Y, Zhao T S , Xu C. J . Power Sources , 2007 , 167 (2) :265 —271
[64] Makino K, Furukawa K, Okajima K, et al . J . Power Sources ,2007 , 166 (1) : 30 —34
[65] Liu Y C , Qiu X P , Zhu W T, et al . J . Power Sources , 2003 ,114 (1) : 10 —14
[66] Hsu N Y, Yen S C , Jeng K T, et al . J . Power Sources , 2006 ,161 (1) : 232 —239
[67] Wu G, Xu B Q. J . Power Sources , 2007 , 174 (1) : 148 —158
[68] KimJ H , Lee H I , Hong S A , et al . J . Electrochem. Soc. ,2005 , 152 (12) : A2345 —A2351
[69] KimJ H , Ha H Y, Oh I H , et al . J . Power Sources , 2004 , 135(1/2) : 29 —35
[70] Zhao X, Fan X, Wang S , et al . International J . Hydrogen Energy , 2005 , 30 (9) : 1003 —1010
[71] Xie Z, Navessin T, Shi K, et al . J . Electrochem. Soc. , 2005 ,152 (6) : 1171 —1179
[72] Eikerling M, Kornyshev A A. J . Electroanaly. Chem. , 1999 ,475 (2) : 107 —123
[73] Raistrick I D. Electrochim. Acta , 1990 , 35 (10) : 1579 —1586
[74] Lai C M, Lin J C , Hsueh K L , et al . Int . J . Hydrogen Energy ,2007 , 32 (17) : 4381 —4388
[75] Jeon M K, Won J Y, Oh K S , et al . Electrochim. Acta , 2007 ,53 (2) : 447 —452
[76] 武刚(Wu G) , 李莉(Li L) , 徐柏庆(XüB Q) . 高等学校化学学报(Chemical J . Chinese Universities) , 2005 , 26 (4) : 715 —718
[77] Paganin V A , Oliveira C L , Ticianelli E A , et al . Electrochim.Acta , 1998 , 43 (24) : 3761 —3766
[78] Divisek J , Jung R , Vinke I C. J . Appl . Electrochem. , 1999 , 29(2) : 165 —170
[79] Lee J S , Han K I , Park S O , et al . Electrochim. Acta , 2004 , 50(2/3 SPEC ISS) : 807 —810
[80] Song J M, Cha S Y, Lee W M. J . Power Sources , 2001 , 94 (1) :78 —84
[81] Kong C S , Kim D Y, Zee H K, et al . J . Power Sources , 2002 ,108 (1/2) : 185 —191
[82] Fisher V , Gandini D , Laufer S. Electrochimica Acta , 1998 , 44(2/3) : 521 —524
[83] Wang Z L , Liu L , Linkov V M. J . Power Sources , 2006 , 160(1) : 326 —333
[84] Jeng K T, Chien C C , Hsu N Y, et al . J . Power Sources , 2007 ,164 (1) : 33 —41
[85] Zhang Y, Wang C , Wan N , et al . Electrochem. Commun. ,2007 , 9 (4) : 667 —670
[86] Himanen O , Hottinen T, Mikkola M, et al . Electrochim. Acta ,2006 , 52 (1) : 206 —214
[87] Wang H , Hou J , Yu H , et al . J . Power Sources , 2007 , 165 (1) :287 —292
[88] Freire TJ , Gonzalez E R. J . Electroanaly. Chem. , 2001 , 503(1/2) : 57 —68
[89] Chen W, Sun G, Guo J , et al . Electrochim. Acta , 2006 , 51(12) : 2391 —2399
[90] 赵新生(Zhao X S) , 孙公权(Sun G Q) , 陈伟民(Chen W M)等. 催化学报(Chinese Journal of Catalysis) , 2005 , 26 (5) : 283 —288
[91] 陈伟民(Chen W M) , 孙公权(Sun G Q) , 赵新生(Zhao X S)等. 高等学校化学学报( Chemical Journal of Chinese University) , 2007 , 28 (5) : 928 —931
[92] Schulze M, Wagner N , Kaz T, et al . Electrochim. Acta , 2007 ,52 (6) : 2328 —2336
[93] 杨代军(Yang D J ) , 马建新(Ma J X) , 徐麟(Xu L) 等. 电源技术(Chinese Journal of Power Sources) , 2006 , 130 (4) : 269 —273
[94] Brett D J , Atkins S , Brandon N P , et al . Electrochem. Solid State Lett . , 2003 , 6 (4) : 63 —66
[95] Cleghorn S J , Derouin C R , Wilson M S , et al . J . Appl .Electrochem. , 1998 , 28 (7) : 663 —672
[96] Schulze M, Gulzow E , Schonbauer S , et al . J . Power Sources ,2007 , 173 (1) : 19 —27
[97] Bender G, Wilson M S , Zawodzinski T A. J . Power Sources ,2003 , 123 (2) : 163 —171
[98] Diard J P , Glandut N , Gorrec B L , et al . J . Electrochem. Soc. ,2004 , 151 (12) : A2193 —A2197
[99] Zhu W H , Payne R U , Tatarchuk B J . J . Power Sources , 2007 ,168 (1 SPEC ISS) : 211 —217
[100] Hakenjos A , Zobel M, Clausnitzer J , et al . J . Power Sources ,2006 , 154 (2) : 360 —363
[101] Le C J , Abouatallah R M, Harrington D A. J . Electrochem.Soc. , 2006 , 153 (5) : 857 —864

[1] 庄全超, 杨梓, 张蕾, 崔艳华. 锂离子电池的电化学阻抗谱分析研究进展[J]. 化学进展, 2020, 32(6): 761-791.
[2] 毛庆*, 景维云, 石越. 非线性谱学分析的基本原理及其在电化学研究中的应用[J]. 化学进展, 2017, 29(2/3): 210-215.
[3] 刘伟庆, 寇东星, 蔡墨朗, 胡林华, 戴松元. 染料敏化太阳电池阻抗特性研究[J]. 化学进展, 2012, 24(05): 722-736.
[4] 王新东, 谢晓峰, 王萌, 刘桂成, 苗睿瑛, 王一拓, 阎群. 直接甲醇燃料电池关键材料与技术[J]. 化学进展, 2011, 23(0203): 509-519.
[5] 庄全超 徐守东 邱祥云 崔永丽 方亮 孙世刚. 锂离子电池的电化学阻抗谱分析[J]. 化学进展, 2010, 22(06): 1044-1057.
[6] 樊博 郭玉国 万立骏. Pt基电催化材料*[J]. 化学进展, 2010, 22(05): 852-860.
[7] 李涛 钟贵明 杨勇. 直接甲醇燃料电池用阻醇全氟磺酸复合质子交换膜*[J]. 化学进展, 2010, 22(0203): 522-536.
[8] 索春光,刘晓为,张宇峰,张博,张鹏,王路文. 直接甲醇燃料电池膜电极的研究与进展*[J]. 化学进展, 2009, 21(0708): 1662-1671.
[9] 王荣蓉,金宝舵,李春文,王泽,谢晓峰,丁青青. 直接甲醇燃料电池的甲醇浓度控制方法* [J]. 化学进展, 2009, 21(0708): 1655-1661.
[10] 唐志诚,吕功煊. 直接甲醇燃料电池阳极电催化剂[J]. 化学进展, 2007, 19(9): 1301-1312.
[11] 齐亮 谢晓峰 徐景明 周其凤 . 直接甲醇燃料电池中的涉水传递现象及数值模拟[J]. 化学进展, 2006, 18(12): 1725-1734.
[12] 王诚,毛宗强,陈荣华,王革华,谢晓峰. 小型燃料电池的研究现状与应用前景分析[J]. 化学进展, 2006, 18(01): 30-35.
[13] 符显珠,李俊,卢成慧,廖代伟. 直接甲醇燃料电池质子膜研究进展*[J]. 化学进展, 2004, 16(01): 77-.