Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering

Vacancies in 2D materials can influence their properties, however controlling their formation remains a challenge. Here the authors show that selective etching of a 3D laminate with in-plane chemical ordering results in formation of MXenes with ordered divacancies, as well as elevated conductance an...

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Autores principales: Quanzheng Tao, Martin Dahlqvist, Jun Lu, Sankalp Kota, Rahele Meshkian, Joseph Halim, Justinas Palisaitis, Lars Hultman, Michel W. Barsoum, Per O.Å. Persson, Johanna Rosen
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/39e6368c02bd4eb08ce797991a8ada1b
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spelling oai:doaj.org-article:39e6368c02bd4eb08ce797991a8ada1b2021-12-02T17:06:15ZTwo-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering10.1038/ncomms149492041-1723https://doaj.org/article/39e6368c02bd4eb08ce797991a8ada1b2017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms14949https://doaj.org/toc/2041-1723Vacancies in 2D materials can influence their properties, however controlling their formation remains a challenge. Here the authors show that selective etching of a 3D laminate with in-plane chemical ordering results in formation of MXenes with ordered divacancies, as well as elevated conductance and supercapacitance.Quanzheng TaoMartin DahlqvistJun LuSankalp KotaRahele MeshkianJoseph HalimJustinas PalisaitisLars HultmanMichel W. BarsoumPer O.Å. PerssonJohanna RosenNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Quanzheng Tao
Martin Dahlqvist
Jun Lu
Sankalp Kota
Rahele Meshkian
Joseph Halim
Justinas Palisaitis
Lars Hultman
Michel W. Barsoum
Per O.Å. Persson
Johanna Rosen
Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering
description Vacancies in 2D materials can influence their properties, however controlling their formation remains a challenge. Here the authors show that selective etching of a 3D laminate with in-plane chemical ordering results in formation of MXenes with ordered divacancies, as well as elevated conductance and supercapacitance.
format article
author Quanzheng Tao
Martin Dahlqvist
Jun Lu
Sankalp Kota
Rahele Meshkian
Joseph Halim
Justinas Palisaitis
Lars Hultman
Michel W. Barsoum
Per O.Å. Persson
Johanna Rosen
author_facet Quanzheng Tao
Martin Dahlqvist
Jun Lu
Sankalp Kota
Rahele Meshkian
Joseph Halim
Justinas Palisaitis
Lars Hultman
Michel W. Barsoum
Per O.Å. Persson
Johanna Rosen
author_sort Quanzheng Tao
title Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering
title_short Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering
title_full Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering
title_fullStr Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering
title_full_unstemmed Two-dimensional Mo1.33C MXene with divacancy ordering prepared from parent 3D laminate with in-plane chemical ordering
title_sort two-dimensional mo1.33c mxene with divacancy ordering prepared from parent 3d laminate with in-plane chemical ordering
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/39e6368c02bd4eb08ce797991a8ada1b
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