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高效聚合物光伏材料研究进展 被引量:6

Progress of highly efficient polymer photovoltaic materials
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摘要 聚合物光伏电池因具有重量轻、成本低以及可制成柔性大面积器件等优点而具有广阔的应用前景.近年来,采用共轭聚合物作为光伏电池活性层材料的研究进展十分迅速.本文介绍了聚合物光伏电池的工作原理和器件结构,综述了聚合物材料作为给体,在体相异质结型光伏器件中的最新研究进展,并对今后进一步提高这类电池的能量转换效率问题进行了探讨. Polymer solar cells (PSCs) have sparked extensive application prospects due to their potential advantages of making large area, light weight and flexible solar panels. In recent years, great progress in polymer photovoltaic materials has been achieved, and more and more new conjugated polymers were designed, synthesized and applied in PSCs. In this review, the device structures and principles of PSCs were introduced, and especially, recent progress in conjugated polymer active layer materials was reviewed in detail.
出处 《中国科学:化学》 CAS CSCD 北大核心 2012年第5期702-714,共13页 SCIENTIA SINICA Chimica
基金 国家自然科学基金(51173189 21104088) 国家高技术研究发展计划(863计划 2011AA050523)的资助
关键词 共轭聚合物太阳能电池 能量转换效率 有机半导体 conjugated polymer solar cells, power conversion efficiency, organic semiconductor
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参考文献64

  • 1Yu G., Gao J, Hummelen, Wudl F, Heeger AJ. Polymer photovoltaic cells: Enhanced efficiencies via a network of internal donor-acceptor heterojunctions. Science, 1995, 270:1789-1791.
  • 2Cheng YJ, Yang SH, Hsu CS. Synthesis of conjugated polymers for organic solar cell applications. Chem Rev, 2009, 109:5868-5923.
  • 3Huo LJ, Zhang, SQ, Guo X, Xu F, Li YF, Hou JH. Replacing alkoxy groups with alkylthienyl groups: A feasible approach to improve the properties of photovoltaic polymers. Angew Chem lnt Ed, 2011, 50:9697-9702.
  • 4He Z, Zhong C, Huang X, Wong W, Wu H, Chen L, Su S, Cao Y. Simultaneous enhancement of open-circuit voltage, short-circuit current density, and fill factor in polymer solar cells. Adv Mater, 2011, 23:4636-4643.
  • 5Chen H, Hou J, Zhang, S, Liang Y, Yang G, Yang Y, Yu L, Wu Y, Li G. Polymer solar cells with enhanced open-circuit voltage and efficiency. Nat Photonics, 2009, 3:649-653.
  • 6Liang Y, Xu Z, Xia J, Tsai S, Wu Y, Li G, Ray C, Yu L. For the bright future--Bulk heterojunction polymer solar cells with power conversion efficiency of 7.4%. Adv Mater, 2010, 22:E135-E138.
  • 7Chu T, Lu J, Beaupre S, Zhang Y, Pouliot J, Wakim S, Zhou J, Leclerc M, Li Z, Ding J, Tao Y. Bulk heterojunction solar cells using thieno[3,4-c]pyrrole-4,6-dione and dithieno[3,2-b:2,3-b]silole copolymer with a power conversion efficiency of 7.3%. J Am Chem Soc, 2011, 133:4250-4253.
  • 8Amb CM, Chen S, Graham KR, Subbiah J, Small CE, So F, Reynolds JR. Dithienogermole as a fused electron donor in bulk heterojunction solar cells. J Am Chem Soc, 2011, 133:10062-10065.
  • 9Zhou HX, Yang LQ, Stuart AC, Price SC, Liu SB, You W. Development of fluorinated benzothiadiazole as a structural unit for a polymer solar cell of 7% efficiency. Angew Chem lnt Ed, 2011, 50:2995-2998.
  • 10Price SC, Stuart AC, Yang LQ, Zhou HX, You W. Fluorine substituted conjugated polymer of medium band gap yields 7% efficiency in polymer-fullerene solar cells. J Am Chern Soc, 2011,133:4625-4631.

同被引文献97

  • 1王妍,罗洁,陈军武,汪锋,曹镛.新型Silole与窄带隙单体的交替共聚物的合成、荧光光谱及光伏性能[J].发光学报,2005,26(4):455-459. 被引量:1
  • 2ChenJ,CaoY. AccChemRes,2009,42(ll),1709~1718.
  • 3Boudreault P LT,Najari A,Leclerc M. ChemMater,2011,23 (3):456~469.
  • 4Yuan Y,Reece T J,Sharma P,Poddar S,Ducharme S,Gruverman A,Yang Y,Huang J. Nat Mater,2011,10 (4) :296~302.
  • 5Spanggaard H,Krebs F C. Sol Energ Mat Sol C,2004,83 (2/3) :125~146..
  • 6Brabee C J. Sol Energ Mat Sol C,2004,83 (2/3) :273~292.
  • 7ZhaoJ B,LiYK,YangGF,JiangK,LinHR,AdeH,MaW,YanH. NatureEnergy,2016,1:l~7.
  • 8DaSilveira Neto B A,Lopes A S A, Ebeling G, Goncalves R S, Costa V E U, Quina F H, Dupont J. Tetrahedron, 2005,61 (46): 10975~10982.
  • 9Hou J,Park M,Zhang Q,Yao Y,Chen L,Li J,Yang Y. Maeromolecules,2008,41,6012~6018.
  • 10Dou L,Chen C C,Yoshimura K,Ohya K,Chang W-H,Gao J,Liu Y,Richard E,Yang Y. Macromolecules,2013,46 (9) :3384--3390.

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