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化学进展 2009, Vol. 21 Issue (6): 1085-1093 前一篇   后一篇

• 综述与评论 •

强度调制光电流谱/光电压谱及其应用

刘伟庆|胡林华|霍志鹏|戴松元**   

  1. (中国科学院等离子体物理研究所 中国科学院新型薄膜太阳电池重点实验室 合肥230031)
  • 收稿日期:2008-07-18 修回日期:2008-09-01 出版日期:2009-06-24 发布日期:2009-06-16
  • 通讯作者: 戴松元 E-mail:sydai@ipp.ac.cn
  • 基金资助:

    973项目;省级资助

Development and Application of Intensity Modulate Photocurrent Spectroscopy and Intensity Modulate Photovoltage Spectroscopy

Liu Weiqing;   |Hu Linhua ;  |Huo Zhipeng  ; |Dai Songyuan**   

  1. (Key Laboratory of Novel Thin-Film Solar Cells, Institute of Plasma Physics, Chinese Academy of Sciences, Hefei 230031, China)
  • Received:2008-07-18 Revised:2008-09-01 Online:2009-06-24 Published:2009-06-16
  • Contact: Dai Songyuan E-mail:sydai@ipp.ac.cn

本文介绍了强度调制光电流谱/光电压谱(IMPS/IMVS)的基本原理和测试方法,综述了IMPS/IMVS在各个领域中的研究进展,特别是在染料敏化太阳电池和半导体电极中电子传输动力学的应用,评述了研究过程中的问题和存在的争议,并对IMPS/IMVS的未来应用进行了展望。

In this paper, the principle of Intensity Modulate Photocurrent Spectroscopy and Intensity Modulate Photovoltage Spectroscopy (IMPS/IMVS) is introduced. The latest results about the development and applications on IMPS/IMVS are reviewed. Especially the applications on dye-sensitized solar cell and semiconductor electrode are reviewed in detail. The issue and controversy are also discussed. At last, the future development tendency of IMPS/IMVS is prospected.

Contents
1 Basic theory and experimental methods of IMPS/IMVS
1.1 Basic theory of IMPS/IMVS
1.2 Experimental methods of IMPS/IMVS
2 IMPS/IMVS applied to DSC
2.1 Study of electron transfer mechanism and kinetics in DSC
2.2 Study of electron transfer mechanism and kinetics in DSC with different microstructure films
2.3 Study of electron transfer mechanism and kinetics in DSC with different type electrolytes
2.4 Existing problems in electron transfer mechanism and kinetics of DSC
3 IMPS/IMVS applied to semiconductor electrodes
4 IMPS/IMVS applied to other systems
5 Ending words

中图分类号: 

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[ 1 ]  Albery WJ , Bartlett P N. J . Electrochem. Soc. , 1982 , 129 (10) :2254 —2261
[ 2 ]  Li J , Peter L M. J . Eletroanal . Chem. , 1985 , 193 (1) : 27 —47
[ 3 ]  Li J , Peter L M. J . Eletroanal . Chem. , 1986 , 199 (1) : 1 —26
[ 4 ]  Albery W J , Bartlett P N , Wilde C P. J . Electrochem. Soc. ,1987 , 10 : 2486 —2491
[ 5 ]  De Jongh P E , Vanmaekelbergh D. J . Phys. Chem. B , 1997 , 101(14) : 2716 —2722
[ 6 ]  Goossens A. Surf . Sci . , 1996 , 365 (3) : 662 —671
[ 7 ]  尹峰(Yin F) , 林原(Lin Y) , 林瑞峰(Lin R F) 等. 物理化学学报(Acta Phys. Chim. Sin. ) , 2002 , 18 (1) : 21 —25
[ 8 ]  Oregan B , Gratzel M. Nature , 1991 , 353 (6346) : 737 —740
[ 9 ]  史成武(Shi C W) , 戴松元(Dai S Y) , 王孔嘉(Wang KJ ) 等.物理化学学报(Acta Phys. Chim. Sin. ) , 2005 , 21 (5) : 534 —538
[10 ]  Dloczik L , Ileperuma O , Lauermann I , et al . J . Phys. Chem. B ,1997 , 101 (49) : 10281 —10289
[11 ]  Bay L , West K. Sol . Energy Mater. Sol . Cells , 2005 , 87 (1/4) :613 —628
[12 ]  Ponomarev E A , Peter L M. J . Electroanal . Chem. , 1995 , 396 (1/2) : 219 —226
[13 ]  Kambili A , Walker A B , Qiu F L , et al . Physica E , 2002 , 14 (1/2) : 203 —209
[14 ]  Van de Lagemaat J , Frank A J . J . Phys. Chem. B , 2000 , 104(18) : 4292 —4294
[15 ]  Franco G, Peter L M, Ponomarev E A. Electrochem. Commun. ,1999 , 1 (2) : 61 —64
[16 ]  Peter L M. J . Phys. Chem. C , 2007 , 111 (18) : 6601 —6612
[17 ]  Oekermann T, Schlettwein D , Jaeger N I. J . Phys. Chem. B ,2001 , 105 (39) : 9524 —9532
[18 ]  Vanmaekelbergh D , Marin F I , van de Lagemaat J . Ber. Bunsen-Ges. Phys. Chem. , 1996 , 100 (5) : 616 —626
[19 ]  Franco G, Gehring J , Peter L M, et al . J . Phys. Chem. B , 1999 ,103 (4) : 692 —698
[20 ]  Duffy N W, Peter L M, Wijayantha K G U. Electrochem.Commun. , 2000 , 2 (4) : 262 —266
[21 ]  Park N G, Schlichthorl G, van de Lagemaat J , et al . J . Phys.Chem. B , 1999 , 103 (17) : 3308 —3314
[22 ]  Schlichthorl G, Park N G, Frank A J . Zeitschrift Fur Physikalische Chemie-International Journal of Research in Physical Chemistry & Chemical Physics , 1999 , 212 : 45 —50
[23 ]  Peter L M. PCCP , 2007 , 9 (21) : 2630 —2642
[24 ]  Fisher A C , Peter L M, Ponomarev E A , et al . J . Phys. Chem. B ,2000 , 104 (5) : 949 —958
[25 ]  Peter L M, Wijayantha K G U. Electrochem. Commun. , 1999 , 1(12) : 576 —580
[26 ]  Peter L M, Wijayantha K GU. Electrochim. Acta , 2000 , 45 (28) :4543 —4551
[27 ]  Bisquert J , Vikhrenko V S. J . Phys. Chem. B , 2004 , 108 (7) :2313 —2322
[28 ]  Bisquert J . J . Phys. Chem. B , 2004 , 108 (7) : 2323 —2332
[29 ]  Cao F , Oskam G, Meyer GJ , et al . J . Phys. Chem. , 1996 , 100(42) : 17021 —17027
[30 ]  Wurfel U , Wagner J , Hinsch A. J . Phys. Chem. B , 2005 , 109(43) : 20444 —20448
[31 ]  Nelson J . Phys. Rev. B , 1999 , 59 (23) : 15374 —15380
[32 ]  Duffy N W, Peter L M, Rajapakse R M G, et al . Electrochem.Commun. , 2000 , 2 (9) : 658 —662
[33 ]  Peter L M, Duffy N W,Wang R L , et al . J . Electroanal . Chem. ,2002 , 524 : 127 —136
[34 ]  Abe R , Takata T, Sugihara H , et al . Chem. Lett . , 2005 , 34 (8) :1162 —1163
[35 ]  Fabregat-Santiago F , Garcia-Belmonte G, Bisquert J , et al . J .Phys. Chem. B , 2002 , 106 (2) : 334 —339
[36 ]  Schlichthorl G, Huang S Y, Sprague J , et al . J . Phys. Chem. B ,1997 , 101 (41) : 8141 —8155
[37 ]  Frank A J , Kopidakis N , van de Lagemaat J . Coord. Chem. Rev. ,2004 , 248 (13P14) : 1165 —1179
[38 ]  Huang S Y, Schlichthorl G, Nozik A J , et al . J . Phys. Chem. B ,1997 , 101 (14) : 2576 —2582
[39 ]  Chen S G, Chappel S , Diamant Y, et al . Chem. Mater. , 2001 , 13(12) : 4629 —4634
[40 ]  Lee S , Jun Y, Kim K J , et al . Sol . Energy Mater. Sol . Cells ,2001 , 65 (1P4) : 193 —200
[41 ]  Van de Lagemaat J , Park N G, Frank A J . J . Phys. Chem. B ,2000 , 104 (9) : 2044 —2052
[42 ]  Cameron P J , Peter L M. J . Phys. Chem. B , 2003 , 107 (51) :14394 —14400
[43 ]  Schwarzburg K, Willig F. J . Phys. Chem. B , 1999 , 103 (28) :5743 —5746
[44 ]  Park N G, van de Lagemaat J , Frank A J . J . Phys. Chem. B ,2000 , 104 (38) : 8989 —8994
[45 ]  Oekermann T, Zhang D , Yoshida T, et al . J . Phys. Chem. B ,2004 , 108 (7) : 2227 —2235
[46 ]  Waita S M, Aduda B O , Mwabora J M, et al . J . Electroanal .Chem. , 2007 , 605 (2) : 151 —156
[47 ]  Zhu K, Neale N R , Miedaner A , et al . Nano Lett . , 2007 , 7 (1) :69 —74
[48 ]  Liang L Y, Dai S Y, Hu L H , et al . J . Phys. Chem. B , 2006 , 110(25) : 12404 —12409
[49 ]  刘伟庆(Liu WQ) , 戴松元(Dai S Y) , 胡林华(Hu L H) 等. 高等学校化学学报(Chem. J . Chinese Universities) , 2008 , 29 (2) :346 —349
[50 ]  Paulsson H , Kloo L , Hagfeldt A , et al . J . Electroanal . Chem. ,2006 , 586 (1) : 56 —61
[51 ]  Kruger J , Plass R , Gratzel M, et al . J . Phys. Chem. B , 2003 , 107(31) : 7536 —7539
[52 ]  郭力(Guo L) , 梁林云(LiangL Y) , 陈冲(Chen C) 等. 物理学报(Acta Physica Sinica) , 2007 , 56 (7) : 4270 —4276
[53 ]  肖绪瑞(Xiao X R) , 张敬波(Zhang J B) , 林原(Lin Y) 等. 物理化学学报(Acta Phys. 2Chim. Sin. ) , 2001 , 17 (10) : 918 —923
[54 ]  张敬波(Zhang J B) , 林原(Lin Y) , 肖绪瑞(Xiao X R) 等. 中国科学: B 辑(Sci . China , Ser. B) , 2000 , 43 (4) : 443 —4481
[55 ]  Oekermann T, Yoshida T, Boeckler C , et al . J . Phys. Chem. B ,2005 , 109 (25) : 12560 —12566
[56 ]  Dicarmine P M, Semenikhin O A. Electrochim. Acta , 2008 , 53(11) : 3744 —3754
[57 ]  Manoj A G, Alagiriswamy A A , Narayan K S. J . Appl . Phys. ,2003 , 94 (6) : 4088 —4095
[58 ]  Hickey S G, Riley D J . J . Phys. Chem. B , 1999 , 103 ( 22) :4599 —4602
[59 ]  Hickey S G, Riley DJ . Electrochim. Acta , 2000 , 45 (20) : 3277 —3282

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