Resistance spikes of NiO/ZnO heterostructures in magnetic field

NiO/ZnO semiconductor heterostructures were fabricated via electrospinning to investigate their resistance behavior under varying magnetic fields. The resistance of the heterostructures was measured at different temperatures and in magnetic fields of varying strength and direction. Resistance spikes...

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Main Authors: Yu-Ze Sun, Li-Peng Qiu, Shi-Long Gao, Shi-Ze Cao, Shuai-Jie Wang, Wen-Peng Han, Jun Zhang, Yun-Ze Long
Format: Article
Language:English
Published: Frontiers Media S.A. 2025-01-01
Series:Frontiers in Physics
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Online Access:https://www.frontiersin.org/articles/10.3389/fphy.2024.1524692/full
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author Yu-Ze Sun
Li-Peng Qiu
Shi-Long Gao
Shi-Ze Cao
Shuai-Jie Wang
Wen-Peng Han
Jun Zhang
Yun-Ze Long
author_facet Yu-Ze Sun
Li-Peng Qiu
Shi-Long Gao
Shi-Ze Cao
Shuai-Jie Wang
Wen-Peng Han
Jun Zhang
Yun-Ze Long
author_sort Yu-Ze Sun
collection DOAJ
description NiO/ZnO semiconductor heterostructures were fabricated via electrospinning to investigate their resistance behavior under varying magnetic fields. The resistance of the heterostructures was measured at different temperatures and in magnetic fields of varying strength and direction. Resistance spikes of 1.3%, 5.2%, and 10.7% were observed at 300 K, 290 K, and 280 K, respectively. These resistance variations were found to be influenced by both the magnetic field magnitude and direction, as well as light illumination. The observed phenomena are attributed to the interaction between the heterojunction and the magnetic field, alongside changes in spin electron orientation. This study demonstrates the potential of combining heterostructures and magnetic fields to modulate resistance, offering promising applications for optoelectronic and magnetoelectronic devices.
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institution Kabale University
issn 2296-424X
language English
publishDate 2025-01-01
publisher Frontiers Media S.A.
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series Frontiers in Physics
spelling doaj-art-5aedbc599490474d9db97558ad8131512025-01-17T05:10:07ZengFrontiers Media S.A.Frontiers in Physics2296-424X2025-01-011210.3389/fphy.2024.15246921524692Resistance spikes of NiO/ZnO heterostructures in magnetic fieldYu-Ze SunLi-Peng QiuShi-Long GaoShi-Ze CaoShuai-Jie WangWen-Peng HanJun ZhangYun-Ze LongNiO/ZnO semiconductor heterostructures were fabricated via electrospinning to investigate their resistance behavior under varying magnetic fields. The resistance of the heterostructures was measured at different temperatures and in magnetic fields of varying strength and direction. Resistance spikes of 1.3%, 5.2%, and 10.7% were observed at 300 K, 290 K, and 280 K, respectively. These resistance variations were found to be influenced by both the magnetic field magnitude and direction, as well as light illumination. The observed phenomena are attributed to the interaction between the heterojunction and the magnetic field, alongside changes in spin electron orientation. This study demonstrates the potential of combining heterostructures and magnetic fields to modulate resistance, offering promising applications for optoelectronic and magnetoelectronic devices.https://www.frontiersin.org/articles/10.3389/fphy.2024.1524692/fullelectrospinningheterostructuresmagnetoresistanceelectromagnetic inductionresistance spikes
spellingShingle Yu-Ze Sun
Li-Peng Qiu
Shi-Long Gao
Shi-Ze Cao
Shuai-Jie Wang
Wen-Peng Han
Jun Zhang
Yun-Ze Long
Resistance spikes of NiO/ZnO heterostructures in magnetic field
Frontiers in Physics
electrospinning
heterostructures
magnetoresistance
electromagnetic induction
resistance spikes
title Resistance spikes of NiO/ZnO heterostructures in magnetic field
title_full Resistance spikes of NiO/ZnO heterostructures in magnetic field
title_fullStr Resistance spikes of NiO/ZnO heterostructures in magnetic field
title_full_unstemmed Resistance spikes of NiO/ZnO heterostructures in magnetic field
title_short Resistance spikes of NiO/ZnO heterostructures in magnetic field
title_sort resistance spikes of nio zno heterostructures in magnetic field
topic electrospinning
heterostructures
magnetoresistance
electromagnetic induction
resistance spikes
url https://www.frontiersin.org/articles/10.3389/fphy.2024.1524692/full
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