Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions

Nanomaterials have attracted attention as antibacterial agents and have several modes of action. Here, the authors report on 2D transition metal disulphide nanosheets with hole boosted electron donation/withdrawal for enhanced antibacterial and biofilm activity caused by electron damage.

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Autores principales: Tonglei Shi, Xuan Hou, Shuqing Guo, Lei Zhang, Changhong Wei, Ting Peng, Xiangang Hu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/b6c5c16f8a0b47f5b93b5efa25c65425
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spelling oai:doaj.org-article:b6c5c16f8a0b47f5b93b5efa25c654252021-12-02T13:51:14ZNanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions10.1038/s41467-020-20547-92041-1723https://doaj.org/article/b6c5c16f8a0b47f5b93b5efa25c654252021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20547-9https://doaj.org/toc/2041-1723Nanomaterials have attracted attention as antibacterial agents and have several modes of action. Here, the authors report on 2D transition metal disulphide nanosheets with hole boosted electron donation/withdrawal for enhanced antibacterial and biofilm activity caused by electron damage.Tonglei ShiXuan HouShuqing GuoLei ZhangChanghong WeiTing PengXiangang HuNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tonglei Shi
Xuan Hou
Shuqing Guo
Lei Zhang
Changhong Wei
Ting Peng
Xiangang Hu
Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
description Nanomaterials have attracted attention as antibacterial agents and have several modes of action. Here, the authors report on 2D transition metal disulphide nanosheets with hole boosted electron donation/withdrawal for enhanced antibacterial and biofilm activity caused by electron damage.
format article
author Tonglei Shi
Xuan Hou
Shuqing Guo
Lei Zhang
Changhong Wei
Ting Peng
Xiangang Hu
author_facet Tonglei Shi
Xuan Hou
Shuqing Guo
Lei Zhang
Changhong Wei
Ting Peng
Xiangang Hu
author_sort Tonglei Shi
title Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
title_short Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
title_full Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
title_fullStr Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
title_full_unstemmed Nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
title_sort nanohole-boosted electron transport between nanomaterials and bacteria as a concept for nano–bio interactions
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/b6c5c16f8a0b47f5b93b5efa25c65425
work_keys_str_mv AT tongleishi nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
AT xuanhou nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
AT shuqingguo nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
AT leizhang nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
AT changhongwei nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
AT tingpeng nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
AT xianganghu nanoholeboostedelectrontransportbetweennanomaterialsandbacteriaasaconceptfornanobiointeractions
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