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PTB7∶PC_(61)BM聚合物太阳电池的制备与研究 被引量:1

PREPARATION AND INVESTIGATION OF PTB7∶PC_(61) BM POLYMER SOLAR CELLS
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摘要 在各种有机聚合物太阳电池活性层材料中,聚苯并二噻吩(PTB7)与富勒烯衍生物(PCBM)的共混材料所制作的电池取得现有单层体相异质结太阳电池领域中最好的光电转换效率。本实验在空气环境中制作结构为ITO/PFN/PTB7∶PC61BM/Mo O3/Al的反型有机聚合物太阳电池,对制作过程中溶液处理、薄膜干燥方式和活性层厚度控制等步骤进行不同条件的对比;并运用紫外可见吸收光谱和J-V曲线测试等方法研究具体制作步骤对太阳电池性能的影响;最后通过测试电池放置不同时间的J-V特性曲线,证明该反型电池在空气中具有良好的稳定性。 Kinds of polymer materials have been investigated in study of polymer solar ceils, among which the solar cell using PTB7 as donor and PCBM as acceptor has gained efficiency of more than 9% and it is the best up to now in the bulk heterojunction solar cells. In our experiments, the inverted polymer solar cell with a construction of ITO/PFN/PTBT: PC61BM/MoO~/A1 has been fabricated and characterized. The contrast tests for different solution concentrations, drying methods and filtering or not have been implemented to study their impacts on the performance of solar ceils via UV-Vis spectra and J-V curves and the stability of the cell was demonstrated as well.
出处 《太阳能学报》 EI CAS CSCD 北大核心 2015年第5期1171-1175,共5页 Acta Energiae Solaris Sinica
基金 国家自然科学基金(60907014 21072019) 北京交通大学基本科研业务费(2013JBM094 2013JBM093)
关键词 聚合物太阳电池 浓度 薄膜处理 PTB7 polymer solar cells concentration film process PTB7
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  • 1周健伟,覃东欢,罗潺,韩丽丽,曹镛.纳米ZnO-共轭聚合物MEH-PPV异质结太阳能电池的制备和研究[J].真空与低温,2006,12(1):9-14. 被引量:11
  • 2Krebs F C. Solar Energy Materials and Solar Cells,2009, 93(4): 394.
  • 3Dennler G, Scharber M C, Brabec C J. Advanced Materials,2009, 21(13): 1323.
  • 4Topp K, Borchert H, Johnen F, et al. J. Phys. Chem. A, 2010, 114(11): 3981.
  • 5Chen H Y, Hou J, Zhang S, et al. Nature Photonics,2009, 3(11): 649.
  • 6Chen X, Zhao C, Rothberg L, et al. Applied Physics Letters,2008, 93: 123302.
  • 7Gunes S, Neugebauer H, Sariciftci N S. Chem. Rev., 2007, 107(4): 1324.
  • 8Park S H, Roy A, Beaupr S, et al. Nature Photonics,2009, 3(5): 297.
  • 9Chen X, Yang J, Haley L Y X C, et al. Organic Electronics,2010, 11(12): 1942.
  • 10Li G, Shrotriya V, Huang J, et al. Nature Materials,2005, 4(11): 864.

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  • 1CHEN J D, CUI C H, LI Y Q, et al. Single-junction polymer solar cells exceeding 10% power conversion efficiency [J]. Adv Mater, 2015, 27(6): 1035-1041.
  • 2CHEN C C, CHANG W H, YOSHIMURA K, et al. An efficient U-iple-junction polymer solar cell having a power conversion efficiency exceeding 11% [J]. Adv Mater, 2014, 26(32): 5670-5677.
  • 3HUANG J, LI C Z, CHUEH C C, et al. 10.4% Power conversion efficiency of ITO-free organic photovoltaics through enhanced light trapping configuration [J]. Adv Energy Mater, 2015, 5(15): 3599-3606.
  • 4YU J S, ZHENO Y F, HUANG J. Towards high performance organic photovoltaic cells: a review of recent development in organic photovoltaics [J]. Polymers, 2014, 6(9): 2473-2509.
  • 5CLARKE T M, DURRANT J R. Charge photogeneration in organic solar cells [J]. Chem Rev, 2010, 110(11): 6736-6767.
  • 6HUR, ZHANG W, wANG P, et al. Characterization and distribution of poly(3-hexylthiophene) phases in an annealed blend film [J]. Chem Plays Chem, 2014, 15(5): 935-941.
  • 7HU R, ZHANG W, FU L M, et al. Spectroelectrochcmical characterization of anionic and cationic polarons in poly(3-hexylthiophene)/fullerene blend. Effects of morphology and interface [J]. Svnth Met, 2013, 169: 41-47.
  • 8高油.PTB7/PC7lBM聚合物有机太阳能电池的制各工艺对器件性能的影响研究[D].西安:西安电子科技大学,2014.
  • 9YU G, GAO 3, HUMMELEN J C, et al. Polymer photovoltiac cells: enhanced eificiencies via a network of internal donor-acceptor heterojunetions [J]. Science 1995, 270(15): 1789-11791.
  • 10AEK W, YANG H, YOON T, et al. Effect of P3HT:PCBM eoneentration in solvent on performances of organic solar ceils [J]. Sol Energy Mater Sol Cells, 2009, 93(8): 1263-1267.

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