功能高分子材料教育部重点实验室

近期发表论文
当前位置: 首页 > 科技创新 > 近期发表论文 > 正文

姚朝阳课题组 陈永胜课题组 | SMALL

发布人:    发布时间:2024/04/01   浏览次数:

What is the Limit Size of 2D Conjugated Extension on Central Units of Small Molecular Acceptors in Organic Solar Cells?


By

Bi, XQ (Bi, Xingqi) [1] , [2] ; Cao, XJ (Cao, Xiangjian) [1] , [2] ; He, TF (He, Tengfei) [1] , [2] ; Liang, HZ (Liang, Huazhe) [1] , [2] ; Yao, ZY (Yao, Zhaoyang) [1] , [2] ; Yang, JY (Yang, Jinyi) [1] , [2] ; Guo, YX (Guo, Yaxiao) [3] ; Long, GK (Long, Guankui) [4] ; Kan, B (Kan, Bin) [4] ; Li, CX (Li, Chenxi) [1] , [2] ; Wan, XJ (Wan, Xiangjian) [1] , [2] ; Chen, YS (Chen, Yongsheng) [1] , [2]

Source

SMALL

DOI

10.1002/smll.202401054

Early Access

MAR 2024

Indexed

2024-03-22

Document Type

Article; Early Access

Abstract

2D conjugated extension on central units of small molecular acceptors (SMAs) has gained great successes in reaching the state-of-the-art organic photovoltaics. Whereas the limit size of 2D central planes and their dominant role in constructing 3D intermolecular packing networks are still elusive. Thus, by exploring a series of SMAs with gradually enlarged central planes, it is demonstrated that, at both single molecular and aggerated levels, there is an unexpected blue-shift for their film absorption but preferable reorganization energies, exciton lifetimes and binding energies with central planes enlarging, especially when comparing to their Y6 counterpart. More importantly, the significance of well-balanced molecular packing modes involving both central and end units is first disclosed through a systematic single crystal analysis, indicating that when the ratio of central planes area/end terminals area is no more than 3 likely provides a preferred 3D intermolecular packing network of SMAs. By exploring the limit size of 2D central planes, This work indicates that the structural profiles of ideal SMAs may require suitable central unit size together with proper heteroatom replacement instead of directly overextending 2D central planes to the maximum. These results will likely provide some guidelines for future better molecular design.