有机太阳能电池
韧性
材料科学
聚合物
理论(学习稳定性)
脆化
纳米技术
形状记忆合金*
化学物理
计算机科学
复合材料
化学
机器学习
算法
作者
Salma Siddika,Zhengxing Peng,Nrup Balar,Xinyun Dong,Xiaowei Zhong,Wei You,Harald Ade,Brendan T. O’Connor
出处
期刊:Joule
[Elsevier]
日期:2023-07-01
卷期号:7 (7): 1593-1608
被引量:8
标识
DOI:10.1016/j.joule.2023.06.002
摘要
Summary
Morphological and mechanical stabilities of organic solar cells (OSCs) are of paramount importance to ensure long-lived devices. However, the fundamental drivers of these stability metrics and their competing relationship have yet to be well defined. Here, several high-performance polymers and small molecule acceptors (SMAs) are considered to assist in the development of a comprehensive view of the molecular drivers of, and interrelationships between, morphological and mechanical stabilities. We find that the SMAs drive much of the embrittlement and diffusion characteristics in the blend films. However, the heterointeraction of the SMA and polymer, probed through dynamic mechanical analysis, is a key contributing factor to the film toughness. The heterointeraction energy is ideally maximally negative (i.e., repulsive), deviating from the geometric mean of the homointeraction energy. These findings assist in introducing a framework to understand the active layer stability and highlight material properties that lead to morphologically stable and physically robust OSCs.
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