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当今能源危机问题日益紧迫,以太阳能为代表的新能源开发成为研究热点.有机半导体材料具有成本低廉、可塑性强、性能优异等特点,因此在太阳能电池领域中具有极大的应用前景.研发性能优异、成本低、稳定性高的有机电子传输材料是太阳能电池研究领域的重要内容.总结了近年来有机电子传输材料的研究进展和发展方向,按照其分子结构分为富勒烯衍生物、大π共轭体系、非π体系、改性材料、碳纳米材料等5类体系,分别介绍了其结构特性,讨论了其在太阳能电池应用中存在的问题及解决方法,综述了该领域的最新研究成果,最后总结了开发新型高效的有机电子传输材料的研究方向.

参考文献

[1] YONGFANG LI.Molecular Design of Photovoltaic Materials for Polymer Solar Cells: Toward Suitable Electronic Energy Levels and Broad Absorption[J].Accounts of Chemical Research,20125(5):723-733.
[2] Yang XN;Loos J;Veenstra SC;Verhees WJH;Wienk MM;Kroon JM;Michels MAJ;Janssen RAJ.Nanoscale morphology of high-performance polymer solar cells[J].Nano letters,20054(4):579-583.
[3] 陈建清;杨东辉;江静华;马爱斌;宋丹;Chaoying Ni;Michael Z Hu.复合钙钛矿太阳能电池电荷传输层材料研究进展[J].材料导报,2015(5):1-7.
[4] X.-Y. Zhu.How to Draw Energy Level Diagrams in Excitonic Solar Cells[J].Journal of physical chemistry letters,201413(13):2283-2288.
[5] John E. Anthony;Antonio Facchetti;Martin Heeney;Seth R. Marder;Xiaowei Zhan.n-Type Organic Semiconductors in Organic Electronics[J].Advanced Materials,201034(34):3876-3892.
[6] Capozzi V.;Lorusso GF.;Minafra A.;Piccolo R.;Trovato T.;Valentini A.;Casamassima G..OPTICAL SPECTRA AND PHOTOLUMINESCENCE OF C-60 THIN FILMS[J].Solid State Communications,19969(9):853-858.
[7] 高宾;赵鹏;樊慧庆;张晓军;王安祥.富勒烯和纳米管结构二硫化钨的研究进展[J].材料导报,2009(3):15-18,23.
[8] Liu, Chang;Wang, Kai;Du, Pengcheng;Meng, Tianyu;Yu, Xinfei;Cheng, Stephen Z. D.;Gong, Xiong.High Performance Planar Heterojunction Perovskite Solar Cells with Fullerene Derivatives as the Electron Transport Layer[J].ACS applied materials & interfaces,20152(2):1153-1159.
[9] Xu, Z.-Q.;Yang, J.-P.;Sun, F.-Z.;Lee, S.-T.;Li, Y.-Q.;Tang, J.-X..Efficient inverted polymer solar cells incorporating doped organic electron transporting layer[J].Organic electronics,20124(4):697-704.
[10] Chunhui Duan;Chengmei Zhong;Chunchen Liu.Highly Efficient Inverted Polymer Solar Cells Based on an Alcohol Soluble Fullerene Derivative Interfacial Modification Material[J].Chemistry of Materials: A Publication of the American Chemistry Society,20129(9):1682-1689.
[11] Cuoqiang Ren;Cody W. Schlenker;Eilaf Ahmed;Selvam Subramaniyan;Selina Olthof;Antoine Kahn;David S. Ginger;Samson A.Jenekhe.Photoinduced Hole Transfer Becomes Suppressed with Diminished Driving Force in Polymer-Fullerene Solar Cells While Electron Transfer Remains Active[J].Advanced functional materials,201310(10):1238-1249.
[12] Alekseev, A. S.;Lemmetyinen, H.;Tolkki, A..Photocurrent Generation and Charge Recombination in Multilayer Stacks of Hole Transporting Layer, Electron Donor-Acceptor Dyad and Electron Transporting Layer[J].Journal of Nanoelectronics and Optoelectronics,20146(6):741-749.
[13] 徐业伟;朱方华;张海连;王鹏;张林.含苝聚合物功能材料的研究进展[J].材料导报,2012(17):92-102.
[14] Michael Sommer.Conjugated polymers based on naphthalene diimide for organic electronics[J].Journal of Materials Chemistry, C. materials for optical and electronic devices,201417(17):3088-3098.
[15] Yi-Ming Chang;Chi-Yi Leu.Conjugated polyelectrolyte and zinc oxide stacked structure as an interlayer in highly efficient and stable organic photovoltaic cells[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,201321(21):6446-6451.
[16] Yuning Li;Prashant Sonar;Leanne Murphy;Wei Hong.High mobility diketopyrrolopyrrole (Dpp)-based organic semiconductor materials for organic thin film transistors and photovoltaics[J].Energy & environmental science: EES,20136(6):1684-1710.
[17] Hu, Lin;Wu, Feiyan;Li, Chunquan;Hu, Aifeng;Hu, Xiaotian;Zhang, Yong;Chen, Lie;Chen, Yiwang.Alcohol-Soluble n-Type Conjugated Polyelectrolyte as Electron Transport Layer for Polymer Solar Cells[J].Macromolecules,201516(16):5578-5586.
[18] Venkatesan, Swaminathan;Ngo, Evan;Khatiwada, Devendra;Zhang, Cheng;Qiao, Qiquan.Enhanced Lifetime of Polymer Solar Cells by Surface Passivation of Metal Oxide Buffer Layers[J].ACS applied materials & interfaces,201529(29):16093-16100.
[19] Yan, Li;Song, Yingxue;Zhou, Yi;Song, Bo;Li, Yongfang.Effect of PEI cathode interlayer on work function and interface resistance of ITO electrode in the inverted polymer solar cells[J].Organic electronics,2015:94-101.
[20] Xuemei Zhao;Chenhui Xu;Haitao Wang.Application of Biuret, Dicyandiamide, or Urea as a Cathode Buffer Layer toward the Efficiency Enhancement of Polymer Solar Cells[J].ACS applied materials & interfaces,20146(6):4329-4337.
[21] Yan, X.;Chu, B.;Li, W.;Su, Z.;Zhang, T.;Jin, F.;Zhao, B.;Zhang, F.;Fan, D.;Gao, Y.;Tsuboi, T.;Wang, J.;Pi, H.;Zhu, J..Improved photovoltaic characteristics of organic cells with heterointerface layer as a hole-extraction layer inserted between ITO anode and donor layer[J].Organic electronics,20137(7):1805-1810.
[22] Yoon, S.M.;Lou, S.J.;Loser, S.;Smith, J.;Chen, L.X.;Facchetti, A.;Marks, T..Fluorinated copper phthalocyanine nanowires for enhancing interfacial electron transport in organic solar cells[J].Nano letters,201212(12):6315-6321.
[23] Breeze AJ;Schlesinger Z;Carter SA;Tillmann H;Horhold HH.Improving power efficiencies in polymer - polymer blend photovoltaics[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,20042/3(2/3):263-271.
[24] 李廷希;隋鹏;高苏苏;孔娜;袁成前;赵玉花.电子传输材料联苯喹喔啉的合成与性质研究[J].材料导报,2011(22):13-15,24.
[25] Roquet S;Cravino A;Leriche P;Aleveque O;Frere P;Roncali J.Triphenylamine-thienylenevinylene hybrid systems with internal charge transfer as donor materials for heterojunction solar cells[J].Journal of the American Chemical Society,200610(10):3459-3466.
[26] Christos L. Chochos;Solon P. Economopoulos;Valadoula Deimede.Synthesis of a Soluble n-Type Cyano Substituted Polythiophene Derivative: A Potential Electron Acceptor in Polymeric Solar Cells[J].The journal of physical chemistry, C. Nanomaterials and interfaces,200728(28):10732-10740.
[27] Biwu Ma;Claire H. Woo;Yoshikazu Miyamoto.Solution Processing of a Small Molecule, Subnaphthalocyanine, for Efficient Organic Photovoltaic Cells[J].Chemistry of Materials: A Publication of the American Chemistry Society,20098(8):1413-1417.
[28] 王耀玲;罗雨;陈立宝;李秋红;王太宏.石墨烯材料的研究进展[J].材料导报,2010(z1):85-88.
[29] Jiao, Y.;Du, A.;Hankel, M.;Zhu, Z.;Rudolph, V.;Smith, S.C..Graphdiyne: A versatile nanomaterial for electronics and hydrogen purification[J].Chemical communications,201143(43):11843-11845.
[30] Yunpu Zhai;Yuqian Dou;Dongyuan Zhao;Pasquale F. Fulvio;Richard T. Mayes;Sheng Dai.Carbon Materials for Chemical Capacitive Energy Storage[J].Advanced Materials,201142(42):4828-4850.
[31] Jun Liu;Yuhua Xue;Yunxiang Cao;Dingshan Yu;Michael Durstock;Liming Dai.Hole and Electron Extraction Layers Based on Graphene Oxide Derivatives for High-Performance Bulk Heterojunction Solar Cells[J].Advanced Materials,201217(17):2228-2233.
[32] Kuang, Chaoyang;Tang, Gang;Jiu, Tonggang;Yang, Hui;Liu, Huibiao;Li, Bairu;Luo, Weining;Li, Xiaodong;Zhang, Wenjun;Lu, Fushen;Fang, Junfeng;Li, Yuliang.Highly Efficient Electron Transport Obtained by Doping PCBM with Graphdiyne in Planar-Heterojunction Perovskite Solar Cells[J].Nano letters,20154(4):2756-2762.
[33] Ju Min Lee;Byoung-Hwa Kwon;Hyung II Park;Hoyeon Kim;Min Gyu Kim;Ji Sun Park;E Su Kim;Seunghyup Yoo;Duk Young Jeon;Sang Ouk Kim.Exciton Dissociation and Charge-Transport Enhancement in Organic Solar Cells with Quantum-Dot/N-doped CNT Hybrid Nanomaterials[J].Advanced Materials,201314(14):2011-2017.
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