High crystalline small molecule manipulates polymer-fullerene morphology and enables 20% improvement in fill factor and device performance

  • Chen, Jianhua
  • Tang, Chengcheng
  • Guo, Shigan
  • Wang, Zilong
  • He, Zhaoxia
  • ... Hwang, Ye-Jin
  • 외 3명
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초록

A morphology of bi-continuous donor-acceptor network absorber is critical to achieve high-performance organic solar cells and the rational control of the morphology is hard to realize. In this work, two high crystalline acceptor-donor-acceptor (A-D-A) conjugated small molecules (ITDCN, ITDCF) were synthesized and employed as the third component for PBDB-T/PC71BM system. Although ITDCN and ITDCF do not have favorable complementary absorption and cascade energy level alignment to PBDB-T and PC71BM, addition of ITDCN or ITDCF into PBDB-T:PC71 BM binary system significantly improves device fill factor (up to 20%) and open circuit voltage (20-40 mV). Characterization using space-charge limited current (SCLC), AFM and TEM shows addition of ITDCN or ITDCF manipulates absorber film phase separation which leads to improved and balanced charge carrier mobility. A power conversion efficiency of 6.68% has been achieved in PBDB-T:ITDCN:PC71BM ternary solar cell with 15% ITDCN which is 24% higher than binary device. Our results suggest introducing high crystalline small molecule into polymer-fullerene system is an effective strategy to rationally control film morphology and improve polymer/fullerene solar cell performance.

키워드

Small moleculeTernary blendPhase separationFill factorOrganic solar cellsORGANIC SOLAR-CELLSNONFULLERENE ACCEPTORSEFFICIENCY
제목
High crystalline small molecule manipulates polymer-fullerene morphology and enables 20% improvement in fill factor and device performance
저자
Chen, JianhuaTang, ChengchengGuo, ShiganWang, ZilongHe, ZhaoxiaHwang, Ye-JinYan, WeiboXin, HaoHuang, Wei
DOI
10.1016/j.orgel.2019.105419
발행일
2020-02
유형
Article
저널명
Organic Electronics: physics, materials, applications
77