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15.8% efficiency binary all-small-molecule organic solar cells enabled by a selenophene substituted sematic liquid crystalline donor

Tongle Xu, Jie Lv, Ke Yang, Ya He, Qianguang Yang, Haiyan Chen, Qianqian Chen, Zhihui Liao, Zhipeng Kan, Tainan Duan, Kuan Sun, Jianyong Ouyang, Shirong Lu

2021Energy & Environmental Science138 citationsDOI

Abstract

A selenophene substituted sematic liquid crystalline donor is developed to achieve outstanding PCEs for binary ASM-OSCs (15.8%) and thick-film ASM-OSCs (14.3%).

Topics & Concepts

Binary numberOrganic solar cellMaterials scienceSmall moleculeChemistryOptoelectronicsComposite materialPolymerArithmeticMathematicsBiochemistryOrganic Electronics and PhotovoltaicsConducting polymers and applicationsThin-Film Transistor Technologies
15.8% efficiency binary all-small-molecule organic solar cells enabled by a selenophene substituted sematic liquid crystalline donor | Litcius