Reduced Energy Loss Enabled by a Chlorinated Thiophene‐Fused Ending‐Group Small Molecular Acceptor for Efficient Nonfullerene Organic Solar Cells with 13.6% Efficiency
Zhenghui Luo(Shenzhen University), Chuluo Yang(Shenzhen University), Jie Min(Wuhan University of Technology), He Yan(Hong Kong University of Science and Technology), Wei Ma(Xi'an Jiaotong University), Yang Zou(Jilin University), Tao Liu(Hong Kong University of Science and Technology), Yiling Wang(Xi'an Jiaotong University), Yongfang Li(Chinese Academy of Sciences), Yuzhong Chen(Fuzhou University), Rui Sun(Jiangsu University), Jingnan Wu(Chalmers University of Technology), Cheng Zhong(Wuhan University), Maojie Zhang(Shandong University), Zhangxiang Chen(Wuhan University), Guangye Zhang(Shenzhen Technology University)
Cited by 166
Related Papers
Aggregation and morphology control enables multiple cases of high-efficiency polymer solar cells
|Nature Communications|2014|3.1k
Fast charge separation in a non-fullerene organic solar cell with a small driving force
|Nature Energy|2016|1.4k
Design rules for minimizing voltage losses in high-efficiency organic solar cells
|Nature Materials|2018|933
High-efficiency robust perovskite solar cells on ultrathin flexible substrates
|Nature Communications|2016|676
Single‐Junction Organic Solar Cells with 19.17% Efficiency Enabled by Introducing One Asymmetric Guest Acceptor
|Advanced Materials|2022|620