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First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters

In this work, we use the first-principles method to study in details the characteristics of the adsorption of hazardous NO(2), NO, CO(2), CO and SO(2) gas molecules by pure and heteroatom (Ti, Si, Mn) modified Al(60)N(60) nanoclusters. It is found that the pure Al(60)N(60) cluster is not sensitive t...

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Autores principales: Liang, Qi, Nie, Xi, Du, Wenzheng, Zhang, Pengju, Wan, Lin, Ahuja, Rajeev, Ping, Jing, Qian, Zhao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7692222/
https://www.ncbi.nlm.nih.gov/pubmed/33137982
http://dx.doi.org/10.3390/nano10112156
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author Liang, Qi
Nie, Xi
Du, Wenzheng
Zhang, Pengju
Wan, Lin
Ahuja, Rajeev
Ping, Jing
Qian, Zhao
author_facet Liang, Qi
Nie, Xi
Du, Wenzheng
Zhang, Pengju
Wan, Lin
Ahuja, Rajeev
Ping, Jing
Qian, Zhao
author_sort Liang, Qi
collection PubMed
description In this work, we use the first-principles method to study in details the characteristics of the adsorption of hazardous NO(2), NO, CO(2), CO and SO(2) gas molecules by pure and heteroatom (Ti, Si, Mn) modified Al(60)N(60) nanoclusters. It is found that the pure Al(60)N(60) cluster is not sensitive to CO. When NO(2), NO, CO(2), CO and SO(2) are adsorbed on Al(60)N(60) cluster’stop.b, edge.a(p), edge.a(h), edge.a(p) andedge.a(h) sites respectively, the obtained configuration is the most stable for each gas. Ti, Si and Mn atoms prefer to stay on the top sites of Al(60)N(60) cluster when these heteroatoms are used to modify the pure clusters. The adsorption characteristics of above hazardous gas molecules on these hetero-atom modified nanoclusters are also revealed. It is found that when Ti-Al(60)N(60) cluster adsorbs CO and SO(2), the energy gap decreases sharply and the change rate of gap is 62% and 50%, respectively. The Ti-modified Al(60)N(60) improves the adsorption sensitivity of the cluster to CO and SO(2). This theoretical work is proposed to predict and understand the basic adsorption characteristics of AlN-based nanoclusters for hazardous gases, which will help and guide researchers to design better nanomaterials for gas adsorption or detection.
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spelling pubmed-76922222020-11-28 First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters Liang, Qi Nie, Xi Du, Wenzheng Zhang, Pengju Wan, Lin Ahuja, Rajeev Ping, Jing Qian, Zhao Nanomaterials (Basel) Article In this work, we use the first-principles method to study in details the characteristics of the adsorption of hazardous NO(2), NO, CO(2), CO and SO(2) gas molecules by pure and heteroatom (Ti, Si, Mn) modified Al(60)N(60) nanoclusters. It is found that the pure Al(60)N(60) cluster is not sensitive to CO. When NO(2), NO, CO(2), CO and SO(2) are adsorbed on Al(60)N(60) cluster’stop.b, edge.a(p), edge.a(h), edge.a(p) andedge.a(h) sites respectively, the obtained configuration is the most stable for each gas. Ti, Si and Mn atoms prefer to stay on the top sites of Al(60)N(60) cluster when these heteroatoms are used to modify the pure clusters. The adsorption characteristics of above hazardous gas molecules on these hetero-atom modified nanoclusters are also revealed. It is found that when Ti-Al(60)N(60) cluster adsorbs CO and SO(2), the energy gap decreases sharply and the change rate of gap is 62% and 50%, respectively. The Ti-modified Al(60)N(60) improves the adsorption sensitivity of the cluster to CO and SO(2). This theoretical work is proposed to predict and understand the basic adsorption characteristics of AlN-based nanoclusters for hazardous gases, which will help and guide researchers to design better nanomaterials for gas adsorption or detection. MDPI 2020-10-29 /pmc/articles/PMC7692222/ /pubmed/33137982 http://dx.doi.org/10.3390/nano10112156 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liang, Qi
Nie, Xi
Du, Wenzheng
Zhang, Pengju
Wan, Lin
Ahuja, Rajeev
Ping, Jing
Qian, Zhao
First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters
title First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters
title_full First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters
title_fullStr First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters
title_full_unstemmed First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters
title_short First-Principles Exploration of Hazardous Gas Molecule Adsorption on Pure and Modified Al(60)N(60) Nanoclusters
title_sort first-principles exploration of hazardous gas molecule adsorption on pure and modified al(60)n(60) nanoclusters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7692222/
https://www.ncbi.nlm.nih.gov/pubmed/33137982
http://dx.doi.org/10.3390/nano10112156
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