Morphology Control Enables Efficient Ternary Organic Solar Cells

  • Xie, Yuanpeng
  • Yang, Fan
  • Li, Yuxiang
  • Uddin, Mohammad Afsar
  • Bi, Pengqing
  • ... Woo, Han Young
  • 외 6명
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초록

Ternary organic solar cells are promising alternatives to the binary counterpart due to their potential in achieving high performance. Although a growing number of ternary organic solar cells are recently reported, less effort is devoted to morphology control. Here, ternary organic solar cells are fabricated using a wide-bandgap polymer PBT1-C as the donor, a crystalline fused-ring electron acceptor ITIC-2Cl, and an amorphous fullerene derivative indene-C-60 bisadduct (ICBA) as the acceptor. It is found that ICBA can disturb pi-pi interactions of the crystalline ITIC-2Cl molecules in ternary blends and then help to form more uniform morphology. As a result, incorporation of 20% ICBA in the PBT1-C:ITIC-2Cl blend enables efficient charge dissociation, negligible bimolecular recombination, and balanced charge carrier mobilities. An impressive power conversion efficiency (PCE) of 13.4%, with a high fill factor (FF) of 76.8%, is eventually achieved, which represents one of the highest PCEs reported so far for organic solar cells. The results manifest that the adoption of amorphous fullerene acceptor is an effective approach to optimizing the ternary blend morphology and thereby increases the solar cell performance.

키워드

ICBAmorphologynonfullerene acceptororganic solar cellsternary structureNONFULLERENE ACCEPTORSINDENE-C-60 BISADDUCT13-PERCENT EFFICIENCYFULLERENEPERFORMANCERECOMBINATIONPHOTOVOLTAICSCOST
제목
Morphology Control Enables Efficient Ternary Organic Solar Cells
저자
Xie, YuanpengYang, FanLi, YuxiangUddin, Mohammad AfsarBi, PengqingFan, BingbingCai, YunhaoHao, XiaotaoWoo, Han YoungLi, WeiweiLiu, FengSun, Yanming
DOI
10.1002/adma.201803045
발행일
2018-09-20
유형
Article
저널명
Advanced Materials
30
38