◆ Energy & Environmental Science2026-01-01· Materials science
20.46% efficient organic solar cells with concurrent voltage enhancement and thermal stability enabled by crystallization-kinetics-controlled morphology
Anhai Liang, Chunliang Li, Bosen Zou, Sein Chung, Byeongjin Kim, Yongjoon Cho, Jiancheng Zhong, Jingjing Zhao, Lixing Tan, Guangquan Zhang, Xin Li, Wuning Wei, Kilwon Cho, He Yan, Zhipeng Kan
原始摘要(英文原文)· Original abstract
Incorporating BTP-FCIO extends the acceptor phase nucleation time from 132 ms to 199 ms and enhances the efficiency to 20.46%. This ternary strategy demonstrates consistent effectiveness across multiple representative Y-series acceptors.
20.46% efficient organic solar cells with concurrent voltage enhancement and thermal stability enabled by crystallization-kinetics-controlled morphology — 科研速览 Science Skim