Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors

Developing a new π-skeletal aromatic fused-ring for tuning material properties in organic electronics is still a challenge due to limited chemical approach. Here, the authors enrich the chemistry by synthesizing SiO-bridged ladder-type π-skeletons with enhanced planarity and deeper energy levels tha...

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Autores principales: Ying Qin, Hui Chen, Jia Yao, Yue Zhou, Yongjoon Cho, Yulin Zhu, Beibei Qiu, Cheng-Wei Ju, Zhi-Guo Zhang, Feng He, Changduk Yang, Yongfang Li, Dongbing Zhao
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/d9fbeed650ec4d0293f301f4108d2b95
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spelling oai:doaj.org-article:d9fbeed650ec4d0293f301f4108d2b952021-12-02T14:42:49ZSilicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors10.1038/s41467-020-19605-z2041-1723https://doaj.org/article/d9fbeed650ec4d0293f301f4108d2b952020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19605-zhttps://doaj.org/toc/2041-1723Developing a new π-skeletal aromatic fused-ring for tuning material properties in organic electronics is still a challenge due to limited chemical approach. Here, the authors enrich the chemistry by synthesizing SiO-bridged ladder-type π-skeletons with enhanced planarity and deeper energy levels than CO-bridged counterpart.Ying QinHui ChenJia YaoYue ZhouYongjoon ChoYulin ZhuBeibei QiuCheng-Wei JuZhi-Guo ZhangFeng HeChangduk YangYongfang LiDongbing ZhaoNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ying Qin
Hui Chen
Jia Yao
Yue Zhou
Yongjoon Cho
Yulin Zhu
Beibei Qiu
Cheng-Wei Ju
Zhi-Guo Zhang
Feng He
Changduk Yang
Yongfang Li
Dongbing Zhao
Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
description Developing a new π-skeletal aromatic fused-ring for tuning material properties in organic electronics is still a challenge due to limited chemical approach. Here, the authors enrich the chemistry by synthesizing SiO-bridged ladder-type π-skeletons with enhanced planarity and deeper energy levels than CO-bridged counterpart.
format article
author Ying Qin
Hui Chen
Jia Yao
Yue Zhou
Yongjoon Cho
Yulin Zhu
Beibei Qiu
Cheng-Wei Ju
Zhi-Guo Zhang
Feng He
Changduk Yang
Yongfang Li
Dongbing Zhao
author_facet Ying Qin
Hui Chen
Jia Yao
Yue Zhou
Yongjoon Cho
Yulin Zhu
Beibei Qiu
Cheng-Wei Ju
Zhi-Guo Zhang
Feng He
Changduk Yang
Yongfang Li
Dongbing Zhao
author_sort Ying Qin
title Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
title_short Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
title_full Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
title_fullStr Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
title_full_unstemmed Silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
title_sort silicon and oxygen synergistic effects for the discovery of new high-performance nonfullerene acceptors
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/d9fbeed650ec4d0293f301f4108d2b95
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AT huichen siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
AT jiayao siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
AT yuezhou siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
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AT yulinzhu siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
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AT zhiguozhang siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
AT fenghe siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
AT changdukyang siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
AT yongfangli siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
AT dongbingzhao siliconandoxygensynergisticeffectsforthediscoveryofnewhighperformancenonfullereneacceptors
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