Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting

Van der Waals heterojunctions (vdWHs) based on transition metal dichalcogenides (TMDs) attract much attention due to their unique electrochemical and physical properties. However, most vdWHs in TMD family are type II with indirect band gap. For vdWHs in TMD family, it is difficult to obtain the dire...

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Main Authors: Qingyi Feng, Hongxiang Deng, Hongdong Yang, Shasha Ke, Haifeng Lv, Li Li, Xiaotao Zu
Format: Article
Language:English
Published: Elsevier 2021-09-01
Series:Results in Physics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379721007014
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spelling doaj-9a3a24391c3f4ef1a57e47757a465a6f2021-08-28T04:43:54ZengElsevierResults in Physics2211-37972021-09-0128104605Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emittingQingyi Feng0Hongxiang Deng1Hongdong Yang2Shasha Ke3Haifeng Lv4Li Li5Xiaotao Zu6School of Physics, University of Electronic Science and Technology of China, NO.2006, XiYuan Ave, 611731 Chengdu, PR ChinaSchool of Physics, University of Electronic Science and Technology of China, NO.2006, XiYuan Ave, 611731 Chengdu, PR China; Science and Technology on Electro-Optical Information Security Control Laboratory, 300308 Tianjin, PR China; Corresponding authors.Shanghai Institute of Space Power-Sources, NO.2965, Dongchuan Road, 200245 Shanghai, PR ChinaSchool of Physics, University of Electronic Science and Technology of China, NO.2006, XiYuan Ave, 611731 Chengdu, PR ChinaSchool of Physics, University of Electronic Science and Technology of China, NO.2006, XiYuan Ave, 611731 Chengdu, PR ChinaSchool of Physics, University of Electronic Science and Technology of China, NO.2006, XiYuan Ave, 611731 Chengdu, PR ChinaSchool of Physics, University of Electronic Science and Technology of China, NO.2006, XiYuan Ave, 611731 Chengdu, PR China; Corresponding authors.Van der Waals heterojunctions (vdWHs) based on transition metal dichalcogenides (TMDs) attract much attention due to their unique electrochemical and physical properties. However, most vdWHs in TMD family are type II with indirect band gap. For vdWHs in TMD family, it is difficult to obtain the direct band gap through band arrangement approaches, limiting their applications in optoelectronics and photocatalysis. In present work, a type-I GaSe/WTe2 heterojunction with direct band gap (1.13 eV) is found by first-principles calculations. We find that this heterojunction has dipole allowed direct band gap transition and large band offsets, which are beneficial to light emission efficiency. The effects of strain on electronic structure and optical properties of GaSe/WTe2 heterojunction are investigated. We find that band gap of type-I GaSe/WTe2 heterojunction can be tuned in large range by strain and it is a promising platform to develop strain-tunable light-emitting device which can emit various wavelengths. The band alignment type of GaSe/WTe2 heterojunction can be tuned from type-I to type-II by strain. Our results show that, in type-II alignment, it has efficient photocatalytic activity in water splitting and the photocatalytic efficiency can be enhanced by strain. We hope our work can make a contribution to exploring a strain-tuned platform for photocatalytic and light-emitting devices.http://www.sciencedirect.com/science/article/pii/S2211379721007014GaSe/WTe2HeterojunctionOptical propertiesBiaxial strainTunable band alignment
collection DOAJ
language English
format Article
sources DOAJ
author Qingyi Feng
Hongxiang Deng
Hongdong Yang
Shasha Ke
Haifeng Lv
Li Li
Xiaotao Zu
spellingShingle Qingyi Feng
Hongxiang Deng
Hongdong Yang
Shasha Ke
Haifeng Lv
Li Li
Xiaotao Zu
Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting
Results in Physics
GaSe/WTe2
Heterojunction
Optical properties
Biaxial strain
Tunable band alignment
author_facet Qingyi Feng
Hongxiang Deng
Hongdong Yang
Shasha Ke
Haifeng Lv
Li Li
Xiaotao Zu
author_sort Qingyi Feng
title Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting
title_short Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting
title_full Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting
title_fullStr Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting
title_full_unstemmed Strain-tunable band alignment and band gap of GaSe/WTe2 heterojunction for water splitting and light-emitting
title_sort strain-tunable band alignment and band gap of gase/wte2 heterojunction for water splitting and light-emitting
publisher Elsevier
series Results in Physics
issn 2211-3797
publishDate 2021-09-01
description Van der Waals heterojunctions (vdWHs) based on transition metal dichalcogenides (TMDs) attract much attention due to their unique electrochemical and physical properties. However, most vdWHs in TMD family are type II with indirect band gap. For vdWHs in TMD family, it is difficult to obtain the direct band gap through band arrangement approaches, limiting their applications in optoelectronics and photocatalysis. In present work, a type-I GaSe/WTe2 heterojunction with direct band gap (1.13 eV) is found by first-principles calculations. We find that this heterojunction has dipole allowed direct band gap transition and large band offsets, which are beneficial to light emission efficiency. The effects of strain on electronic structure and optical properties of GaSe/WTe2 heterojunction are investigated. We find that band gap of type-I GaSe/WTe2 heterojunction can be tuned in large range by strain and it is a promising platform to develop strain-tunable light-emitting device which can emit various wavelengths. The band alignment type of GaSe/WTe2 heterojunction can be tuned from type-I to type-II by strain. Our results show that, in type-II alignment, it has efficient photocatalytic activity in water splitting and the photocatalytic efficiency can be enhanced by strain. We hope our work can make a contribution to exploring a strain-tuned platform for photocatalytic and light-emitting devices.
topic GaSe/WTe2
Heterojunction
Optical properties
Biaxial strain
Tunable band alignment
url http://www.sciencedirect.com/science/article/pii/S2211379721007014
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