OAK

Achieving Thickness-Insensitive Morphology of the Photoactive Layer for Printable Organic Photovoltaic Cells via Side Chain Engineering in Nonfullerene Acceptors

Metadata Downloads
Abstract
Although high power conversion efficiency of over 14% has been achieved using nonfullerene acceptors (NFAs) in organic photovoltaics (OPVs), securing their insensitive device performance to the thickness of the photoactive layer remains an indispensable requirement for their successful commercialization via printing technologies. In this study, by synthesizing a new series of ITIC-based NFAs having alkyl or alkoxy groups, it is found that the bulk heterojunction morphology dependence on the thickness of the photoactive layer becomes more severe as the difference in the surface energy of the donor and acceptor increases. It is believed that this observation is the origin that yields the device performance dependence on the thickness of the photoactive layer. Through sensitive control of the surface energy of these ITIC-based NFAs, it is demonstrated that thickness-insensitive OPVs can be achieved even using a doctor blade technique under air without using any additives. It is believed that present approach provides an important insight into the design of photoactive materials and morphology control for the printable OPVs using NFAs.
Author(s)
Lee, SeongyuPark, Kwang HunLee, Jong-HoonBack, HyungcheolSung, Min JaeLee, JinhoKim, JehanKim, HeejooKim, Yun-HiKwon, Soon-KiLee, Kwanghee
Issued Date
2019-04
Type
Article
DOI
10.1002/aenm.201900044
URI
https://scholar.gist.ac.kr/handle/local/12765
Publisher
Wiley-VCH Verlag
Citation
Advanced Energy Materials, v.9, no.14
ISSN
1614-6832
Appears in Collections:
Department of Chemistry > 1. Journal Articles
Department of Materials Science and Engineering > 1. Journal Articles
공개 및 라이선스
  • 공개 구분공개
파일 목록
  • 관련 파일이 존재하지 않습니다.

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.