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Exploring alkylthiol additives in PBDB-T:ITIC blended active layers for solar cell applications

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【作者】 李想何志群孙盟杰张慧敏郭泽邦许亚军李瀚梁春军荆西平

【Author】 Xiang Li;Zhiqun He;Mengjie Sun;Huimin Zhang;Zebang Guo;Yajun Xu;Han Li;Chunjun Liang;Xiping Jing;Key Laboratory of Luminescence and Optical Information, Ministry of Education, Institute of Optoelectronic Technology,Beijing Jiaotong University;College of Chemistry and Molecular Engineering, Peking University;

【通讯作者】 何志群;

【机构】 Key Laboratory of Luminescence and Optical Information, Ministry of Education, Institute of Optoelectronic Technology,Beijing Jiaotong UniversityCollege of Chemistry and Molecular Engineering, Peking University

【摘要】 Bulk heterojunction, non-fullerene PBDB-T:ITIC blend polymer solar cells have been fabricated. The active layers consisting of PBDB-T as a donor and ITIC as an acceptor are optimized using a series of alkylthiol additives(1,3-propanedithiol, 1,4-butanedithiol, and 1,8-octanedithiol). It is found that the donor and acceptor are phase separated with different crystalline domains. The additives effectively re-organize the morphology and extend the molecule ordering in lamellar structure with increased correlation length in ITIC domain, benefiting the generation and dissociation of exciton and reducing charge recombination. A substantial improvement in power conversion efficiency of the devices from 8.13% to 9.44% is observed. This study shows that the application of alkylthiol additives is a simple and effective approach to improve the device performance in solar cells based on polymer/non-fullerene blend system.

【Abstract】 Bulk heterojunction, non-fullerene PBDB-T:ITIC blend polymer solar cells have been fabricated. The active layers consisting of PBDB-T as a donor and ITIC as an acceptor are optimized using a series of alkylthiol additives(1,3-propanedithiol, 1,4-butanedithiol, and 1,8-octanedithiol). It is found that the donor and acceptor are phase separated with different crystalline domains. The additives effectively re-organize the morphology and extend the molecule ordering in lamellar structure with increased correlation length in ITIC domain, benefiting the generation and dissociation of exciton and reducing charge recombination. A substantial improvement in power conversion efficiency of the devices from 8.13% to 9.44% is observed. This study shows that the application of alkylthiol additives is a simple and effective approach to improve the device performance in solar cells based on polymer/non-fullerene blend system.

【基金】 Project supported by the National Natural Science Foundation of China(Grant Nos.11474017,61574014, and 61874008)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2019年08期
  • 【分类号】TQ317;TM914.4
  • 【下载频次】41
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