Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study

High significant importance in energy and environmental research, its non-toxic and non-flammable character and relatively abundance and environmental friendly nature, Titanium Dioxide is an interesting Transition Metal Oxide. With its good corrosion resistance property it is also used as pigment in...

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Main Authors: Prasad Tara, Prabhakar Budigi, Bhavani A. Geetha, Wani Tanveer Ahmad, Ahuja Ravi Shanker
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/41/e3sconf_amgse2024_01027.pdf
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author Prasad Tara
Prabhakar Budigi
Bhavani A. Geetha
Wani Tanveer Ahmad
Ahuja Ravi Shanker
author_facet Prasad Tara
Prabhakar Budigi
Bhavani A. Geetha
Wani Tanveer Ahmad
Ahuja Ravi Shanker
author_sort Prasad Tara
collection DOAJ
description High significant importance in energy and environmental research, its non-toxic and non-flammable character and relatively abundance and environmental friendly nature, Titanium Dioxide is an interesting Transition Metal Oxide. With its good corrosion resistance property it is also used as pigment in paint colours and in the coatings. A potential candidate for high-temperature gas sensing applications bleveraging its nanoparticles due to its notable excellent sensitivity and stability. It is also attractive due to its significance as photocatalysts in solar cells as a semiconductor material. In this ab-initio study, we designed a 2D H2-TiO2 heterostructure considering rutile and anatase based and observed comparative variation in diverse properties of Titanium Dioxide due to Hydrogen Gas. In this ab-initio study, we designed a 2D both rutile and anatase based H2-TiO2 hetrostructure and observed comparative variation in diverse properties of Titanium Dioxide due to Hydrogen Gas considering potential application in Hydrogen Fuel based engine and container where TiO2 is used. In this study we presented its predicted impact under high pressure inside the border exertion of DFT exhausting Quantum ESPRESSO software using High Performance Computing and comparatively investigated and discussed various related properties of the heterostructure.
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spelling doaj.art-858a64e72c3e485d85d740c8686837a32024-04-12T07:41:36ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015110102710.1051/e3sconf/202451101027e3sconf_amgse2024_01027Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio StudyPrasad Tara0Prabhakar Budigi1Bhavani A. Geetha2Wani Tanveer Ahmad3Ahuja Ravi Shanker4Department of Physics, School of Sciences, OPJS UniversityOPJS UniversitySchool of Sciences, Noida International UniversitySchool of Sciences, Noida International UniversitySchool of Sciences, Noida International UniversityHigh significant importance in energy and environmental research, its non-toxic and non-flammable character and relatively abundance and environmental friendly nature, Titanium Dioxide is an interesting Transition Metal Oxide. With its good corrosion resistance property it is also used as pigment in paint colours and in the coatings. A potential candidate for high-temperature gas sensing applications bleveraging its nanoparticles due to its notable excellent sensitivity and stability. It is also attractive due to its significance as photocatalysts in solar cells as a semiconductor material. In this ab-initio study, we designed a 2D H2-TiO2 heterostructure considering rutile and anatase based and observed comparative variation in diverse properties of Titanium Dioxide due to Hydrogen Gas. In this ab-initio study, we designed a 2D both rutile and anatase based H2-TiO2 hetrostructure and observed comparative variation in diverse properties of Titanium Dioxide due to Hydrogen Gas considering potential application in Hydrogen Fuel based engine and container where TiO2 is used. In this study we presented its predicted impact under high pressure inside the border exertion of DFT exhausting Quantum ESPRESSO software using High Performance Computing and comparatively investigated and discussed various related properties of the heterostructure.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/41/e3sconf_amgse2024_01027.pdftio2h2-tio2 heterostructurehydrogen gasdftab-initio study
spellingShingle Prasad Tara
Prabhakar Budigi
Bhavani A. Geetha
Wani Tanveer Ahmad
Ahuja Ravi Shanker
Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study
E3S Web of Conferences
tio2
h2-tio2 heterostructure
hydrogen gas
dft
ab-initio study
title Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study
title_full Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study
title_fullStr Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study
title_full_unstemmed Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study
title_short Effect of Hydrogen Gas on Titanium Dioxide using Heterostructure H2-TiO2: An ab-initio Study
title_sort effect of hydrogen gas on titanium dioxide using heterostructure h2 tio2 an ab initio study
topic tio2
h2-tio2 heterostructure
hydrogen gas
dft
ab-initio study
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/41/e3sconf_amgse2024_01027.pdf
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