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Benzochalcogenodiazole-based donor-acceptor-acceptor molecular donors for organic solar cells
Journal article   Peer reviewed

Benzochalcogenodiazole-based donor-acceptor-acceptor molecular donors for organic solar cells

Hao-Chun Ting, Yi-Hong Chen, Li-Yen Lin, Shu-Hua Chou, Yi-Hung Liu, Hao-Wu Lin and Ken-Tsung Wong
ChemSusChem, Vol.7(2), pp.457-465
02/2014

Abstract

chalcogens electrochemistry electron transfer photochemistry structure-property relationships
Four new molecules with a donor-acceptor-acceptor (D-A-A) configuration, in which 2,1,3-benzoxadiazole or 2,1,3-benzoselenodiazole were adopted as the central bridging acceptor, were synthesized as electron donors for small-molecule organic solar cells. In conjunction with two previously reported 2,1,3-benzothiadiazole-based compounds, the influences of the benzochalcogenodiazole acceptor unit and the ditolylarylamine donor moiety on the molecular structure, electrochemical behavior, and optical properties of the materials were investigated systematically to obtain a clear structure-property relationship. Vacuum-deposited hybrid planar mixed-heterojunction devices fabricated with the new donors and C 70 as the acceptor showed power conversion efficiencies in the range of 2.9-4.3% under 1?sun (100?mWcm -2 ) AM?1.5?G simulated solar illumination. The current density-voltage characteristics of solar cells at various light intensities were measured, which revealed a high bimolecular recombination. Copyright © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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