Tuning the solution aggregation and molecular order for efficient and thermally stable polymer solar cells
Mengyuan GaoSchool of Materials Science and Engineering, Tianjin Key Laboratory of Molecular Optoelectronic Sciences, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin University, Tianjin 300350, ChinaJunjiang WuCollaborative Innovation Center of Chemical Science and Engineering TianjinXiyue YuanState Key Laboratory of Luminescent Materials and Devices, Institute of Polymer Optoelectronic Materials and Devices, South China University of Technology, Guangzhou, 510640, ChinaChunyong HeInstitute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing 100049, ChinaHanqiu JiangInstitute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing 100049, ChinaWenchao ZhaoCo-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Materials Science and Engineering, Nanjing Forestry University, Nanjing 210037, ChinaChunhui DuanState Key Laboratory of Luminescent Materials and Devices, Institute of Polymer Optoelectronic Materials and Devices, South China University of Technology, Guangzhou, 510640, ChinaYu ChenBeijing Synchrotron Radiation Laboratory, Institute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing 100049, ChinaYubin KeInstitute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing 100049, ChinaHuifeng YaoSchool of Chemistry and Chemical Engineering, Southeast University, Nanjing, ChinaLong YeSchool of Materials Science and Engineering, Tianjin Key Laboratory of Molecular Optoelectronic Sciences, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin University, Tianjin 300350, China
2023en
ABI
Abstract
Molecular ordering effect of semi-paracrystalline polymers on the solution aggregation structure, morphology, and performance of polymer/nonfullerene blends has been thoroughly investigated by advanced neutron scattering and complementary techniques.
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