Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design

Bridging the biocatalytic repertoire and the effective environmental remediation remains a great challenge. Here, inspired by the dehalogenases, the authors designed a single atom Co catalyst on carbon doped boron nitride that exhibits high stability and selectivity in dechlorination.

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Autores principales: Yuan Min, Xiao Zhou, Jie-Jie Chen, Wenxing Chen, Fangyao Zhou, Zhiyuan Wang, Jia Yang, Can Xiong, Ying Wang, Fengting Li, Han-Qing Yu, Yuen Wu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e661365e25c047ba89ba427fc8782a0e
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spelling oai:doaj.org-article:e661365e25c047ba89ba427fc8782a0e2021-12-02T14:01:14ZIntegrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design10.1038/s41467-020-20619-w2041-1723https://doaj.org/article/e661365e25c047ba89ba427fc8782a0e2021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20619-whttps://doaj.org/toc/2041-1723Bridging the biocatalytic repertoire and the effective environmental remediation remains a great challenge. Here, inspired by the dehalogenases, the authors designed a single atom Co catalyst on carbon doped boron nitride that exhibits high stability and selectivity in dechlorination.Yuan MinXiao ZhouJie-Jie ChenWenxing ChenFangyao ZhouZhiyuan WangJia YangCan XiongYing WangFengting LiHan-Qing YuYuen WuNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yuan Min
Xiao Zhou
Jie-Jie Chen
Wenxing Chen
Fangyao Zhou
Zhiyuan Wang
Jia Yang
Can Xiong
Ying Wang
Fengting Li
Han-Qing Yu
Yuen Wu
Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
description Bridging the biocatalytic repertoire and the effective environmental remediation remains a great challenge. Here, inspired by the dehalogenases, the authors designed a single atom Co catalyst on carbon doped boron nitride that exhibits high stability and selectivity in dechlorination.
format article
author Yuan Min
Xiao Zhou
Jie-Jie Chen
Wenxing Chen
Fangyao Zhou
Zhiyuan Wang
Jia Yang
Can Xiong
Ying Wang
Fengting Li
Han-Qing Yu
Yuen Wu
author_facet Yuan Min
Xiao Zhou
Jie-Jie Chen
Wenxing Chen
Fangyao Zhou
Zhiyuan Wang
Jia Yang
Can Xiong
Ying Wang
Fengting Li
Han-Qing Yu
Yuen Wu
author_sort Yuan Min
title Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
title_short Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
title_full Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
title_fullStr Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
title_full_unstemmed Integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
title_sort integrating single-cobalt-site and electric field of boron nitride in dechlorination electrocatalysts by bioinspired design
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e661365e25c047ba89ba427fc8782a0e
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AT xiaozhou integratingsinglecobaltsiteandelectricfieldofboronnitrideindechlorinationelectrocatalystsbybioinspireddesign
AT jiejiechen integratingsinglecobaltsiteandelectricfieldofboronnitrideindechlorinationelectrocatalystsbybioinspireddesign
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AT yingwang integratingsinglecobaltsiteandelectricfieldofboronnitrideindechlorinationelectrocatalystsbybioinspireddesign
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