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Establishing Co‐Continuous Network of Conjugated Polymers and Elastomers for High‐Performance Polymer Solar Cells with Extreme Stretchability (Adv. Energy Mater. 26/2024)

Organic Solar Cells In article number 2401191, Bumjoon J. Kim and co‐workers develop intrinsically‐stretchable organic solar cells (IS‐OSCs) with exceptional mechanical robustness, by constructing co‐continuous networks of conjugated polymers (D18) and elastomers (SEBS) in photoactive layers. The IS...

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Published in:Advanced energy materials 2024-07, Vol.14 (26), p.n/a
Main Authors: Lee, Jin‐Woo, Nguyen, Trieu Hoang‐Quan, Oh, Eun Sung, Lee, Seungbok, Choi, Jaeyoung, Kwon, Hyun Soo, Wang, Cheng, Lee, Seungjin, Lee, Jung‐Yong, Kim, Taek‐Soo, Kim, Bumjoon J.
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container_issue 26
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container_title Advanced energy materials
container_volume 14
creator Lee, Jin‐Woo
Nguyen, Trieu Hoang‐Quan
Oh, Eun Sung
Lee, Seungbok
Choi, Jaeyoung
Kwon, Hyun Soo
Wang, Cheng
Lee, Seungjin
Lee, Jung‐Yong
Kim, Taek‐Soo
Kim, Bumjoon J.
description Organic Solar Cells In article number 2401191, Bumjoon J. Kim and co‐workers develop intrinsically‐stretchable organic solar cells (IS‐OSCs) with exceptional mechanical robustness, by constructing co‐continuous networks of conjugated polymers (D18) and elastomers (SEBS) in photoactive layers. The IS‐OSCs based on D180.4:SEBS0.6/L8‐BO preserve 86% of their initial efficiency at 50% strain, demonstrating potential for wearable applications.
doi_str_mv 10.1002/aenm.202470106
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subjects elastomer
intrinsically stretchable organic solar cells
mechanical robustness
polymer solar cells
stretchability
title Establishing Co‐Continuous Network of Conjugated Polymers and Elastomers for High‐Performance Polymer Solar Cells with Extreme Stretchability (Adv. Energy Mater. 26/2024)
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