Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode

Two-dimensional MoS2 homojunctions, considered potential building blocks for next generation flexible electronics, currently suffer from quick degradation. Here, Zhang and co-workers use a self-healing sulfur vacancy mechanism to produce a MoS2photodiode that possesses long term stability.

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Autores principales: Xiankun Zhang, Qingliang Liao, Shuo Liu, Zhuo Kang, Zheng Zhang, Junli Du, Feng Li, Shuhao Zhang, Jiankun Xiao, Baishan Liu, Yang Ou, Xiaozhi Liu, Lin Gu, Yue Zhang
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/7b00e575e5de48758dedfecf659a71ed
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spelling oai:doaj.org-article:7b00e575e5de48758dedfecf659a71ed2021-12-02T14:40:46ZPoly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode10.1038/ncomms158812041-1723https://doaj.org/article/7b00e575e5de48758dedfecf659a71ed2017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15881https://doaj.org/toc/2041-1723Two-dimensional MoS2 homojunctions, considered potential building blocks for next generation flexible electronics, currently suffer from quick degradation. Here, Zhang and co-workers use a self-healing sulfur vacancy mechanism to produce a MoS2photodiode that possesses long term stability.Xiankun ZhangQingliang LiaoShuo LiuZhuo KangZheng ZhangJunli DuFeng LiShuhao ZhangJiankun XiaoBaishan LiuYang OuXiaozhi LiuLin GuYue ZhangNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-8 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiankun Zhang
Qingliang Liao
Shuo Liu
Zhuo Kang
Zheng Zhang
Junli Du
Feng Li
Shuhao Zhang
Jiankun Xiao
Baishan Liu
Yang Ou
Xiaozhi Liu
Lin Gu
Yue Zhang
Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode
description Two-dimensional MoS2 homojunctions, considered potential building blocks for next generation flexible electronics, currently suffer from quick degradation. Here, Zhang and co-workers use a self-healing sulfur vacancy mechanism to produce a MoS2photodiode that possesses long term stability.
format article
author Xiankun Zhang
Qingliang Liao
Shuo Liu
Zhuo Kang
Zheng Zhang
Junli Du
Feng Li
Shuhao Zhang
Jiankun Xiao
Baishan Liu
Yang Ou
Xiaozhi Liu
Lin Gu
Yue Zhang
author_facet Xiankun Zhang
Qingliang Liao
Shuo Liu
Zhuo Kang
Zheng Zhang
Junli Du
Feng Li
Shuhao Zhang
Jiankun Xiao
Baishan Liu
Yang Ou
Xiaozhi Liu
Lin Gu
Yue Zhang
author_sort Xiankun Zhang
title Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode
title_short Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode
title_full Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode
title_fullStr Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode
title_full_unstemmed Poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer MoS2 homojunction photodiode
title_sort poly(4-styrenesulfonate)-induced sulfur vacancy self-healing strategy for monolayer mos2 homojunction photodiode
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/7b00e575e5de48758dedfecf659a71ed
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