18 Papers
Bin Li is an academic researcher from Monash University, Clayton campus. The author has contributed to research in topics: Perovskite (structure) & Passivation. The author has an hindex of 3, co-authored 5 publications. Previous affiliations of Bin Li include Monash University.
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Papers
Interfacial benzenethiol modification facilitates charge transfer and improves stability of cm-sized metal halide perovskite solar cells with up to 20% efficiency
Jianfeng Lu,Xiongfeng Lin,Xuechen Jiao,Xuechen Jiao,Thomas R. Gengenbach,Andrew D. Scully,Liangcong Jiang,Boer Tan,Jingsong Sun,Bin Li,Narendra Pai,Udo Bach,Udo Bach,Alexandr N. Simonov,Yi-Bing Cheng,Yi-Bing Cheng +15 more
TL;DR: In this article, a modification of the interface between the perovskite and a spiro-OMeTAD hole-transporting material with commercially available para-substituted benzenethiol molecules facilitates fabrication of cm-sized PSCs with both improved efficiency and stability.
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All-in-one additive enables defect passivated, crystallization modulated and moisture resisted perovskite films toward efficient solar cells
Chuanming Tian,Yu Zhao,Xuefei Han,Bin Li,Yichuan Rui,Hao Xiong,Yu Qiu,Wei An,Kerui Li,Chengyi Hou,Yaogang Li,Hongzhi Wang,Qinghong Zhang +12 more
TL;DR: In this paper , an all-in-one additive, named 2-[N,N-bi(trifluoromethylsulfonyl)amino]pyridine (2-BTFSIP), is introduced into the perovskite layer to address this issue.
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Defect passivation and electrical conductivity enhancement in perovskite solar cells using functionalized graphene quantum dots
Yichuan Rui,Zuoming Jin,Xinyi Fan,Weitao Li,Bin Li,Tianpeng Li,Yuanqiang Wang,Liang Wang,Jia Liang +8 more
TL;DR: In this paper , an effective strategy of incorporating single-crystalline graphene quantum dots (GQDs) into the perovskite films is proposed to passivate the defect states.
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High‐Performance and Stable Semi‐Transparent Perovskite Solar Cells through Composition Engineering
Jae Choul Yu,Bin Li,Christopher J. Dunn,Junlin Yan,Benjamin T. Diroll,Anthony S. R. Chesman,Jacek J. Jasieniak +6 more
TL;DR: In this paper , the role of A and X-site modification in APbX3 perovskites is studied to understand their influence on the performance and stability of ST-PeSCs.
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Dual passivation of SnO2/Perovskite heterogeneous interfacial defects for efficient perovskite solar cells
TL;DR: In this article , a heterointerface engineering strategy is presented by employing a multifunctional molecule of reduced l-glutathione (GSH), which improves the crystallization of SnO2, resulting in a continuous and conformal coverage of the FTO surface.
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