期刊文献+

不同电导率的PEDOT对聚合物光电池性能的影响 被引量:1

Influence of PEDOT with Different Conductivity on the Performance of Polymer Photovoltaic Cells
下载PDF
导出
摘要 采用几种具有不同电导率的PEDOT(poly(3,4-ethylene dioxythiophene)),研究其对器件性能的影响,结果表明高电导率的PEDOT与ITO(Indium tin oxide)一起作为光电池的阳极,有利于光电池能量转换效率的提高.探讨了高电导率PEDOT的厚度与器件性能之间的相关性,表明在保证器件不漏电的前提下PEDOT的厚度越薄越好. In the fabrication process of polymer photovohaic cells, the PEDOT was mostly used as buffer layer on the anode in order to reduce the leakage and enhance the correction efficiency. The influence of PEDOT with different conductivity on the PVC device performance was investigated. The result shows the improvement of energy transfer efficiency owing to the anode composed of ITO and PEDOT with highly conductivity. Furthermore, the relation between the thickness of high conductivity PEDOT and device performance has been studied. The result shows the performance of device with a thin PEDOT is excellent.
作者 罗洁 唐文军
出处 《广东工业大学学报》 CAS 2008年第3期6-9,共4页 Journal of Guangdong University of Technology
基金 国家自然科学基金资助项目(50018302) 国家973资助项目(2002613404) 广东工业大学博士基金资助项目(073037)
关键词 缓冲层 电导率 聚合物光电池 能量转换效率 buffer layer conductivity polymer photovohaic ceils energy transfer efficiency
  • 相关文献

参考文献10

  • 1Johnson J. Power from the sun [ J ]. Chem Eng News, 2004, 82 (25): 25-28.
  • 2Shaheen S E, Ginley D S, Jabbour G E. Technical theme: organic-based photovoltaics [ J]. MRS Bull, 2005, 30(1) : 10.
  • 3Yu G, Gao J, Hummelen J C, et al. Polymer photovoltaic cells : enhanced efficiencies via a network of internal donoracceptor heterojunctions [ J ]. Science, 1995, 270 (5243) : 1789-1791.
  • 4Sariciftci N S, Smilowitz L, Heeger A J, et al. Photoinduced electron transfer from a conducting polymer to buckminsterfullerene [J]. Science, 1992, 258 (5087): 1474- 1476.
  • 5Sariciftci N S, Braun D, Zhang C, et al. Semiconducting polymer-buckminsterfullerene heterojunctions : Diodes, photodiodes, and photovoltaic cells [ J]. Appl Phys Lett, 1993, 62 (6) : 585-587.
  • 6Van Overstraten R J, Mertens R P. Physics, Technology and Use of Photovoltaics [ M ]. Bristol : Adam Hilger Ltd, 1986.
  • 7Xue J G, Uchida S, Rand B P, et al. 4.2% efficient organic photovoltaic cells with low series resistances [ J ]. Appl Phys Lett,2004,84(16):3013-3015.
  • 8Nunzi J M. Organic photovoltaic materials and devices [J]. C R Phys,2002, 3 (4): 523-542.
  • 9Moliton A, Nunzi J M. How to model the behaviour of organic photovoltaic cells [ J ]. Polym Int, 2006, 55 (6) : 583-600.
  • 10Deng X Y, Zheng L P, Yang C H, et al. Polymer photovotaic devices fabricated with blend MEHPPV and organic small molecules [J]. J Phys them B, 2004, 108 (11): 3451-3456.

同被引文献14

  • 1张卓,唐洪,吴旭峰,梁晓,石高全.一种耐高温聚噻吩膜的电化学合成[J].高分子学报,2005,15(6):943-946. 被引量:6
  • 2王静,宋薇娜,司马义.努尔拉.纳米级聚噻吩衍生物的固相聚合[J].化工新型材料,2007,35(5):51-53. 被引量:7
  • 3Meyer V. Ber.,1883,16:1465-1478.
  • 4Shirakawa H., Louis E.J., MacDiarmid A.G., Chiang C.K., Heeger A.J.. J Chem Soc. Chem Comm.,1977,(16):578-580.
  • 5Yamamoto T,Sanechika K,Yamamoyo A.J Polym Sci.Polym Lett Ed, 1980,18:9-12.
  • 6Yamamoto T, Morita A, Miyazaki Y, et al. Macromolecules,1992,25:1214-1223.
  • 7Yanaka K., Shichiri T., Wang S., Yamabe T.. Synth. Met.,1988,24:203-215.
  • 8Val e rie R., et al. Biomacromolecules,2007,8(2):315-317.
  • 9Tomasz S.,et al.J.Polymer Science:Part A:Polymer Chenmistry,2009,47:306-309.
  • 10Snbhalakshmi N., Jayant K., et al. Macromolecules,2008,41: 3049-3052.

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部