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基于给体-受体-给体型稠环模块的小分子光伏材料的研究进展 被引量:4

Research Progress on Small-Molecule Photovoltaic Materials Based on Donor-Acceptor-Donor Type Polycyclic Aromatic Hydrocarbons
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摘要 给体-受体-给体(Donor-Acceptor-Donor,D-A-D)型稠环及其衍生物因具有共轭平面结构大、载流子迁移率高、吸光性能优异和光热稳定性等优点,被应用于太阳能电池中,并获得了优异的光伏性能.概述了基于D-A-D型稠环的小分子光伏材料的最新研究进展,总结了该类材料分子结构与其光伏性能之间的关系. Donor-acceptor-donor(D-A-D)type polycyclic aromatic hydrocarbon and its derivatives have been widely used in the design of photovoltaic materials and have made great breakthrough in recent years,due to their advantages of unique large planar structure,high charge mobility,excellent light absorption performance,thermal and light stability.The latest research progress of small-molecule photovoltaic materials based on D-A-D type polycyclic aromatic hydrocarbons is reviewed.The relationships between photovoltaic properties and the molecular structures are analyzed systematically.
作者 戴学新 成晓东 阚志鹏 肖泽云 段泰男 胡超 陆仕荣 Dai Xuexin;Cheng Xiaodong;Kan Zhipeng;Xiao Zeyun;Duan Tainan;Hu Chao;Lu Shirong(School of Chemistry and Chemical Engineerings Qiannan Normal University for Nationalities,Duyun,Guizhou 558000;Organic Semiconductor Research Center,Chongqing Institute of Green and Intelligent Technology,Chinese Academy of Science,Chongqing 400714)
出处 《有机化学》 SCIE CAS CSCD 北大核心 2020年第12期4031-4045,共15页 Chinese Journal of Organic Chemistry
基金 国家自然科学基金(No.21762036) 贵州省科技厅(No.LH[2015]7706) 贵州省教育厅(No.KY[2018]422)资助项目。
关键词 稠环 太阳能电池 小分子 有机光伏材料 polycyclic aromatic hydrocarbon solar cell small-molecule organic photovoltaic material
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  • 1Imahori H, Umeyama T, Ito S. Large n-aromatic molecules as potential sensitizers for highly efficient dye-sensitized solar cells. Acc Chem Res, 2009, 42:1809-1818.
  • 2Goncalves LM, Bermudez VZ, Ribeiroa HA, Mendes AM. Dye-sensitized solar cells: A safe bet for the future. Energy Environ Sci, 2008, 1: 655-657.
  • 3Hamann TW, Jensen RA, Martinson ABF, Ryswyk HV, Hupp JT. Advancing beyond current generation dye-sensitized solar cells. Energy Environ Sci, 2008, I: 66-78.
  • 4Clifford NJ, Eugenia MF, Aurelien V, Emilo P. Sensitizer molecular structure-device efficiency relationship in dye sensitized solar cells. Chern Soc Rev, 2011, 40: 1635-1646.
  • 5Mishra A, Fischer MKR, Bauerle P. Metal-free organic dyes for dye-sensitized solar cells: From structure property relationships to design rules. Angew Chern In Ed, 2009, 48: 2474-2499.
  • 6Yum JH, Chen P, Gratzel M, Nazeeruddin MK. Recent developments in solid state dye-sensitized solar cells. ChernSusChern, 2008, I: 699-707.
  • 7Ooyama Y, Harima Y. Molecular designs and syntheses of organic dyes for dye-sensitized solar cells. Eur J Org Chern, 2009, 2009: 2903-2934.
  • 8Snaifh HJ. Estimating the maximum attainable efficiency in dye-sensitized solar cells. Adv Funct Mater, 2009, 20: 13-9.
  • 9Yum JH, Baranoff E, Wenger S, Nazeeruddin MdK, Gratzel M. Panchromatic engineering for dye-sensitized solar cells. Energy Environ Sci, 2011, 4: 842-857.
  • 10Lin H, Li X, Liu Y, Li J. Progresses in dye-sensitized solar cells. Mater Sci Eng B, 2009,161: 2-7.

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