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Progress of the key materials for organic solar cells 被引量:15
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作者 Yang Tong Zuo Xiao +24 位作者 Xiaoyan Du Chuantian Zuo Yuelong Li Menglan Lv Yongbo Yuan Chenyi Yi Feng Hao Yong Hua Ting Lei Qianqian Lin Kuan Sun Dewei Zhao Chunhui Duan Xiangfeng Shao Wei Li Hin-Lap Yip Zhengguo Xiaol Bin Zhang Qingzhen Bian Yuanhang Cheng Shengjian Liu Ming Cheng Zhiwen Jin Shangfeng Yang Liming Ding 《Science China Chemistry》 SCIE EI CAS CSCD 2020年第6期758-765,共8页
Organic solar cells have attracted academic and industrial interests due to the advantages like lightweight,flexibility and roll-to-roll fabrication.Nowadays,18%power conversion efficiency has been achieved in the sta... Organic solar cells have attracted academic and industrial interests due to the advantages like lightweight,flexibility and roll-to-roll fabrication.Nowadays,18%power conversion efficiency has been achieved in the state-of-the-art organic solar cells.The recent rapid progress in organic solar cells relies on the continuously emerging new materials and device fabrication technologies,and the deep understanding on film morphology,molecular packing and device physics.Donor and acceptor materials are the key materials for organic solar cells since they determine the device performance.The past 25 years have witnessed an odyssey in developing high-performance donors and acceptors.In this review,we focus on those star materials and milestone work,and introduce the molecular structure evolution of key materials.These key materials include homopolymer donors,D-A copolymer donors,A-D-A small molecular donors,fullerene acceptors and nonfullerene acceptors.At last,we outlook the challenges and very important directions in key materials development. 展开更多
关键词 organic solar cells key materials D-A copolymer donors fullerene acceptors nonfullerene acceptors
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钙钛矿叠层太阳电池 被引量:2
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作者 方志敏 曾强 +17 位作者 左传天 张立秀 肖涵睿 程明 郝锋 保秦烨 张立学 袁永波 吴武强 赵德威 程远航 谭海仁 肖作 杨上峰 刘芳洋 靳志文 闫金定 丁黎明 《Science Bulletin》 SCIE EI CSCD 2021年第6期621-636,M0004,共17页
自2009年报道以来,钙钛矿太阳电池的能量转换效率从3.8%增长到25.5%,是发展最为迅猛的一类太阳电池.为了进一步提高能量转换效率,突破肖克利·奎伊瑟效率极限(S-Q极限),可以采用带隙互补的吸光材料制备多结太阳电池,从而提高太阳光... 自2009年报道以来,钙钛矿太阳电池的能量转换效率从3.8%增长到25.5%,是发展最为迅猛的一类太阳电池.为了进一步提高能量转换效率,突破肖克利·奎伊瑟效率极限(S-Q极限),可以采用带隙互补的吸光材料制备多结太阳电池,从而提高太阳光利用率.由于钙钛矿吸光材料具有可溶液加工、带隙可调的特性,它是制备叠层太阳电池的理想材料.本文介绍了近年来基于钙钛矿材料的高效叠层太阳电池:钙钛矿/硅,钙钛矿/铜铟镓硒,钙钛矿/钙钛矿和钙钛矿/有机叠层太阳电池.作者首先介绍了叠层电池的结构和工作原理,之后分别总结了以上四种叠层电池的重要进展,最后围绕器件结构、效率、大面积制备、稳定性、成本以及铅毒性这六个方面,讨论了未来钙钛矿叠层太阳电池面临的挑战.目前钙钛矿/硅、钙钛矿/铜铟镓硒和钙钛矿/钙钛矿叠层电池的能量转换效率分别达到了29.1%、25.9%和25.6%,均超过了相应单结电池的最高效率,有巨大发展空间.钙钛矿叠层太阳电池将会吸引越来越多的关注,成为太阳能研究领域的重要方向. 展开更多
关键词 能量转换效率 叠层太阳电池 叠层电池 多结太阳电池 钙钛矿太阳电池 铜铟镓硒 可调的 可溶液加工
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