Cong Xiao
Jianghan University
13 Papers
2 Citations
Cong Xiao is an academic researcher from Jianghan University. The author has contributed to research in topics: Chemistry & Organic solar cell. The author has an hindex of 1, co-authored 2 publications.
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Papers
Over 17% efficiency all-small-molecule organic solar cells based on an organic molecular donor employing 2D side chain symmetric-breaking strategy
Zhiya Li,Xunchang Wang,Nan-Yang Zheng,Saparbaev Aziz,Jiayi Zhang,Cong Xiao,Shiyun Lei,Xufan Zheng,Manxue Zhang,Yuda Li,Bo Xiao,Renqiang Yang +11 more
TL;DR: Symmetric breaking strategy has broadly applied in organic photovoltaic material design while a comprehensive understanding of the effects of two dimension (2D) asymmetric side chains in all-small-molecule organic solar cells (ASM-OSCs) is discussed in this article .
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Hybrid Cycloalkyl‐Alkyl Chain‐Based Symmetric/Asymmetric Acceptors with Optimized Crystal Packing and Interfacial Exciton Properties for Efficient Organic Solar Cells
Cong Xiao,Xunchang Wang,Tian Zhong,Ruixue Zhou,Xufan Zheng,Yirui Liu,Tianyu Hu,Yixuan Luo,Fengbo Sun,Biao Xiao,Zhitian Liu,Chunyan Yang,Renqiang Yang +12 more
TL;DR: In this paper , a symmetric/asymmetric acceptor bearing bilateral and unilateral 10-cyclohexyldecyl side chains is designed, synthesized, and compared with the symmetric 2,2′−((2Z, 2′Z)]-((12,13−bis(2butyl octyl)−3,9 bis(ethylhexyl)]-12, 13−dihydro]-[1,2,5]thiadiazolo[3,4]-e]thieno[2,3′:4,5]-thienono[ 3,2]-e]-pyrrolo[3.2]-g]thiamo[ 2.3]-g]-thiamoe[2.5]-e
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High‐Efficiency All‐Small‐Molecule Organic Solar Cells Based on New Molecule Donors with Conjugated Symmetric/Asymmetric Hybrid Cyclopentyl‐Hexyl Side Chains
TL;DR: In this paper , the asymmetric cyclopentylhexyl side chains modification has a significant influence on potential energy surface and intermolecular interaction that can ensure preferable molecular assembly and regulate the D/A interfacial energetics, thus boosting the exciton dissociation and charge transport.
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Backbone Engineering with Asymmetric Core to Finely Tune Phase Separation for High-Performance All-Small-Molecule Organic Solar Cells
TL;DR: In this article, two small molecule donors FBD-S1 and TBD-S2 with identical electron-withdrawing units but various asymmetric central cores exhibit differing phase separation in Y6-based blend films.
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High Miscibility‐Induced Reduction of Trap Density in All‐Polymer Solar Cells Using Hybrid Cyclohexyl‐Hexyl Side Chains
Fengbo Sun,Xunchang Wang,Ming Wan,Zhitian Liu,Yixuan Luo,Jiajia Ren,Xufan Zheng,Thomas Rath,Cong Xiao,Tianyu Hu,Gregor Trimmel,Renqiang Yang +11 more
TL;DR: Researchers developed a new polymer donor with hybrid cyclohexyl-hexyl side chains, achieving high miscibility and ordered packing in blend films, resulting in reduced trap density and improved power conversion efficiency (PCE) of 17.1% in all-polymer solar cells.
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