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Non‐Fused Ring Acceptors Achieving over 15.6% Efficiency Organic Solar Cell by Long Exciton Diffusion Length of Alloy‐Like Phase and Vertical Phase Separation Induced by Hole Transport Layer (Adv. Energy Mater. 6/2023)

Alloy‐Like Acceptors Non‐fused ring electron acceptors are becoming attractive in organic solar cells due to their low cost and easy synthesis. In article number 2203402, Baomin Xu, Aung Ko Ko Kyaw, and co‐workers demonstrate a ternary blend using two in‐house designed non‐fused ring electron accept...

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Published in:Advanced energy materials 2023-02, Vol.13 (6), p.n/a
Main Authors: Luo, Dou, Jiang, Zhengyan, Tan, Wen Liang, Zhang, Lifu, Li, Lanqing, Shan, Chengwei, McNeill, Christopher R., Sonar, Prashant, Xu, Baomin, Kyaw, Aung Ko Ko
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container_issue 6
container_start_page
container_title Advanced energy materials
container_volume 13
creator Luo, Dou
Jiang, Zhengyan
Tan, Wen Liang
Zhang, Lifu
Li, Lanqing
Shan, Chengwei
McNeill, Christopher R.
Sonar, Prashant
Xu, Baomin
Kyaw, Aung Ko Ko
description Alloy‐Like Acceptors Non‐fused ring electron acceptors are becoming attractive in organic solar cells due to their low cost and easy synthesis. In article number 2203402, Baomin Xu, Aung Ko Ko Kyaw, and co‐workers demonstrate a ternary blend using two in‐house designed non‐fused ring electron acceptors and a polymer donor to form an alloy‐like acceptor and vertical phase separation in the bulk‐heterojunction.
doi_str_mv 10.1002/aenm.202370025
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subjects alloy‐like acceptors
Diffusion length
exciton diffusion length
Excitons
Heterojunctions
hole transport layers
NFREAs
Phase separation
Photovoltaic cells
Solar cells
vertical phase separation
Vertical separation
title Non‐Fused Ring Acceptors Achieving over 15.6% Efficiency Organic Solar Cell by Long Exciton Diffusion Length of Alloy‐Like Phase and Vertical Phase Separation Induced by Hole Transport Layer (Adv. Energy Mater. 6/2023)
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