节点文献

三重态材料m-Ir(CPmPB)3作为添加剂制备出效率达到18.2%的准双层全聚太阳能电池(英文)

Over 18.2% efficiency of layer–by–layer all–polymer solar cells enabled by homoleptic iridium(Ⅲ) carbene complex as solid additive

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 周航孙英杰张苗倪玉衡张封华Sang Young Jeong黄天环李熊Han Young Woo张坚Wai–Yeung Wong马晓玲张福俊

【Author】 Hang Zhou;Yingjie Sun;Miao Zhang;Yuheng Ni;Fenghua Zhang;Sang Young Jeong;Tianhuan Huang;Xiong Li;Han YoungWoo;Jian Zhang;Wai–Yeung Wong;Xiaoling Ma;Fujun Zhang;Key Laboratory of Luminescence and Optical Information (Ministry of Education),Beijing Jiaotong University;Department of Applied Biology and Chemical Technology and Research Institute for Smart Energy,The Hong Kong Polytechnic University;Department of Physics,Beijing Technology and Business University;Organic Optoelectronic Materials Laboratory,Department of Chemistry,College of Science,Korea University;School of Materials Science and Engineering,Engineering Research Center of Electronic Information Materials and Devices,Ministry of Education,Guangxi Key Laboratory of Information Materials,Guilin University of Electronic Technology;Tangshan Research Institute of Beijing Jiaotong University;

【通讯作者】 张苗;张坚;Wai–Yeung Wong;马晓玲;张福俊;

【机构】 Key Laboratory of Luminescence and Optical Information (Ministry of Education),Beijing Jiaotong UniversityDepartment of Applied Biology and Chemical Technology and Research Institute for Smart Energy,The Hong Kong Polytechnic UniversityDepartment of Physics,Beijing Technology and Business UniversityOrganic Optoelectronic Materials Laboratory,Department of Chemistry,College of Science,Korea UniversitySchool of Materials Science and Engineering,Engineering Research Center of Electronic Information Materials and Devices,Ministry of Education,Guangxi Key Laboratory of Information Materials,Guilin University of Electronic TechnologyTangshan Research Institute of Beijing Jiaotong University

【摘要】 The vertical phase distribution of active layers plays a vital role in balancing exciton dissociation and cha rge transport for achieving efficient polymer solar cells(PSCs).The layer-by-layer(LbL) PSCs are commonly prepared by using sequential spin-coating method from donor and acceptor solutions with distinct solvents and solvent additives.The enhanced exciton dissociation is expected in the LbL PSCs with efficient charge transport in the relatively neat donor or acceptor layers.In this work,a series of LbL all-polymer solar cells(APSCs) were fabricated with PM6 as donor and PY-DT as acceptor,and triplet material m-Ir(CPmPB)3 is deliberately incorporated into PY-DT layer to prolong exciton lifetimes of active layers.The power conversion efficiency(PCE) of LbL APSCs is improved to 18.24% from 17.32%by incorporating 0.3 wt% m-Ir(CPMPB)3 in PY-DT layer,benefiting from the simultaneously enhanced short-circuit current density(Isc) of 25.17 mA cm-2 and fill factor(FF) of 74.70%.The enhancement of PCE is attributed to the efficient energy transfer of m-Ir(CPmPB)3 to PM6 and PY-DT,resulting in the prolonged exciton lifetime in the active layer and the increased exciton diffusion distance.The efficient energy transfer from m-Ir(CPmPB)3 to PM6 and PY-DT layer can be confirmed by the increased photoluminescence(PL) intensity and the prolonged PL lifetime of PM6 and PY-DT in PM6+m-Ir(CPmPB)3and PY-DT+m-Ir(CPmPB)3 films.This study indicates that the triplet material as solid additive has great potential in fabricating efficient LbL APSCs by prolonging exciton lifetimes in active layers.

【Abstract】 The vertical phase distribution of active layers plays a vital role in balancing exciton dissociation and cha rge transport for achieving efficient polymer solar cells(PSCs).The layer-by-layer(LbL) PSCs are commonly prepared by using sequential spin-coating method from donor and acceptor solutions with distinct solvents and solvent additives.The enhanced exciton dissociation is expected in the LbL PSCs with efficient charge transport in the relatively neat donor or acceptor layers.In this work,a series of LbL all-polymer solar cells(APSCs) were fabricated with PM6 as donor and PY-DT as acceptor,and triplet material m-Ir(CPmPB)3 is deliberately incorporated into PY-DT layer to prolong exciton lifetimes of active layers.The power conversion efficiency(PCE) of LbL APSCs is improved to 18.24% from 17.32%by incorporating 0.3 wt% m-Ir(CPMPB)3 in PY-DT layer,benefiting from the simultaneously enhanced short-circuit current density(Isc) of 25.17 mA cm-2 and fill factor(FF) of 74.70%.The enhancement of PCE is attributed to the efficient energy transfer of m-Ir(CPmPB)3 to PM6 and PY-DT,resulting in the prolonged exciton lifetime in the active layer and the increased exciton diffusion distance.The efficient energy transfer from m-Ir(CPmPB)3 to PM6 and PY-DT layer can be confirmed by the increased photoluminescence(PL) intensity and the prolonged PL lifetime of PM6 and PY-DT in PM6+m-Ir(CPmPB)3and PY-DT+m-Ir(CPmPB)3 films.This study indicates that the triplet material as solid additive has great potential in fabricating efficient LbL APSCs by prolonging exciton lifetimes in active layers.

【基金】 supported by Beijing Natural Science Foundation (4232073 and 1232029);the National Natural Science Foundation of China (62175011, 62105017, 62205276, and 5231101105);the Natural Science Foundation of Hebei Province (F2023105002);the National Research Foundation of Korea (2023K2A9A2A06059546);the support from the Hong Kong Research Grants Council (PolyU 15307321);RGC Senior Research Fellowship Scheme (SRFS2021–5S01);Research Institute for Smart Energy (CDAQ)
  • 【文献出处】 Science Bulletin ,科学通报(英文) , 编辑部邮箱 ,2024年18期
  • 【分类号】TM914.4
  • 【下载频次】33
节点文献中: 

本文链接的文献网络图示:

本文的引文网络