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High performance tandem organic solar cells via a strongly infrared-absorbing narrow bandgap acceptor.


ABSTRACT: Tandem organic solar cells are based on the device structure monolithically connecting two solar cells to broaden overall absorption spectrum and utilize the photon energy more efficiently. Herein, we demonstrate a simple strategy of inserting a double bond between the central core and end groups of the small molecule acceptor Y6 to extend its conjugation length and absorption range. As a result, a new narrow bandgap acceptor BTPV-4F was synthesized with an optical bandgap of 1.21?eV. The single-junction devices based on BTPV-4F as acceptor achieved a power conversion efficiency of over 13.4% with a high short-circuit current density of 28.9?mA?cm-2. With adopting BTPV-4F as the rear cell acceptor material, the resulting tandem devices reached a high power conversion efficiency of over 16.4% with good photostability. The results indicate that BTPV-4F is an efficient infrared-absorbing narrow bandgap acceptor and has great potential to be applied into tandem organic solar cells.

SUBMITTER: Jia Z 

PROVIDER: S-EPMC7794321 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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High performance tandem organic solar cells via a strongly infrared-absorbing narrow bandgap acceptor.

Jia Zhenrong Z   Qin Shucheng S   Meng Lei L   Ma Qing Q   Angunawela Indunil I   Zhang Jinyuan J   Li Xiaojun X   He Yakun Y   Lai Wenbin W   Li Ning N   Ade Harald H   Brabec Christoph J CJ   Li Yongfang Y  

Nature communications 20210108 1


Tandem organic solar cells are based on the device structure monolithically connecting two solar cells to broaden overall absorption spectrum and utilize the photon energy more efficiently. Herein, we demonstrate a simple strategy of inserting a double bond between the central core and end groups of the small molecule acceptor Y6 to extend its conjugation length and absorption range. As a result, a new narrow bandgap acceptor BTPV-4F was synthesized with an optical bandgap of 1.21 eV. The single  ...[more]

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