4.6 Article

Fluorination as an effective tool to increase the photovoltaic performance of indacenodithiophene-alt-quinoxaline based wide-bandgap copolymers

期刊

ORGANIC ELECTRONICS
卷 33, 期 -, 页码 128-134

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.orgel.2016.03.012

关键词

Indacenodithiophene; Quinoxaline; Fluorination; Polymer solar cells

资金

  1. Major Cultivation and General Programs of the National Natural Science Foundation of China [51573154, 51273168, 51403178]
  2. Program for Innovative Research Cultivation Team in University of Ministry of Education of China [1337304]
  3. Innovation Group in Hunan Natural Science Foundation [12JJ7002]
  4. Natural Science Foundation of Hunan [14JJ4019, 2015JJ3113]
  5. key project of Hunan Provincial Education Department [13A102, 13A133, 14C1099]

向作者/读者索取更多资源

To investigate the effect of the fluoride phenyl side-chains into quinoxaline (PQx) unit on the photovoltaic performances of polymers, we demonstrated the synthesis and characterization of two novel wide-bandgap (WBG) copolymers, PIDT-DTPQx and PIDT-DTFPQx, in which indacenodithiophene (IDT), 2,3-diphenylquinoxaline (PQx) (and/or 2,3-bis(4-fluorophenyl) quinoxaline (FPQx)) and thiophene (T) were used as the donor (D) unit, acceptor (A) unit and pi-bridge, respectively. Compared to the non-fluorine substituted PIDT-DTPQx, fluorine substituted PIDT-DTFPQx presents a deep HOMO energy level and a high hole mobility. Obviously, improved the V-oc, J(sc), and FF simultaneously, giving rise to overall efficiencies in the PIDT-DTFPQx/PC71BM-based PSCs. A highest PCE of 5.78% was obtained with a V-oc of 0.86 V, J(sc) of 10.84 mA cm(-2) and FF of 61.7% in the PIDT-DTFPQx/PC71BM-based PSCs, while PIDT-DTPQx based devices also demonstrated a PCE of 5.11%, under the illumination of AM 1.5G (100 mW cm(-2)). Note that these PCE values were achieved for PSCs without any extra treatments. Furthermore, these optimal devices have a film thickness of about 175 nm for the polymer/PC71BM-based active layers. The results provide that introduction of the fluorine atom into quinoxaline unit by side-chain engineering is one of the effective strategies to construct the promising polymer donor materials for future application of large-area polymer solar cells. (C) 2016 Elsevier B.V. All rights reserved.

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