Correlating Charge-Transfer State Lifetimes with Material Energetics in Polymer:Non-Fullerene Acceptor Organic Solar Cells

  • Dong, Yifan; 
  • Cha, Hyojung; 
  • Bristow, Helen L.; 
  • Lee, Jinho; 
  • Kumar, Aditi; 
  • 외 4명
Citations

WEB OF SCIENCE

102
Citations

SCOPUS

103

초록

Minimizing the energy offset between the lowest exciton and charge-transfer (CT) states is a widely employed strategy to suppress the energy loss (E-g/q - V-OC) in polymer:non-fullerene acceptor (NFA) organic solar cells (OSCs). In this work, transient absorption spectroscopy is employed to determine CT state lifetimes in a series of low energy loss polymer:NFA blends. The CT state lifetime is observed to show an inverse energy gap law dependence and decreases as the energy loss is reduced. This behavior is assigned to increased mixing/hybridization between these CT states and shorter-lived singlet excitons of the lower gap component as the energy offset Delta ECT-S1 is reduced. This study highlights how achieving longer exciton and CT state lifetimes has the potential for further enhancement of OSC efficiencies.

키워드

VOLTAGE LOSSES; EFFICIENT; ENERGY; SEPARATION; DONOR; GAP
제목
Correlating Charge-Transfer State Lifetimes with Material Energetics in Polymer:Non-Fullerene Acceptor Organic Solar Cells
저자
Dong, Yifan; Cha, Hyojung; Bristow, Helen L.; Lee, Jinho; Kumar, Aditi; Tuladhar, Pabitra Shakya; McCulloch, Iain; Bakulin, Artem A.; Durrant, James R.
DOI
10.1021/jacs.1c00584
발행일
2021-05-26
유형
Article
저널명
Journal of the American Chemical Society
권
143
호
20
페이지
7599 ~ 7603