Issue 21, 2017

Benzophenone-based small molecular cathode interlayers with various polar groups for efficient polymer solar cells

Abstract

A series of novel benzophenone-based small molecular cathode interfacial materials with different polar groups including hydroxyl groups, neutral amino groups, amino N-oxide, and sulfobetaine ions were synthesized for PTB7:PC71BM-based polymer solar cells between the active layer and Al electrode. The photovoltaic properties of the devices with these interfacial materials were studied. The differences in interface modification performance of hydroxyl and amino interfacial materials were investigated for the first time. The devices with a solution-processed amino N-oxide-based interlayer showed a PCE of 9.34% with the highest short-circuit current density and fill factor by reducing the series resistance and charge recombination compared to the devices with the other interlayers in this work. The study of structure–property relationships proposes the significant guidance for the design of efficient cathode interface materials in organic solar cells.

Graphical abstract: Benzophenone-based small molecular cathode interlayers with various polar groups for efficient polymer solar cells

Supplementary files

Article information

Article type
Communication
Submitted
20 Mar 2017
Accepted
19 Apr 2017
First published
21 Apr 2017

J. Mater. Chem. A, 2017,5, 10154-10160

Benzophenone-based small molecular cathode interlayers with various polar groups for efficient polymer solar cells

Z. Liu, W. Li, R. Peng, W. Jiang, Q. Guan, T. Lei, R. Yang, A. Islam, Q. Wei and Z. Ge, J. Mater. Chem. A, 2017, 5, 10154 DOI: 10.1039/C7TA02427D

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