All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction

Abstract The organic magnetoelectric complexes are beneficial for the development on flexible magnetoelectric devices in the future. In this work, we fabricated all organic multiferroic ferromagnetic/ferroelectric complexes to study magnetoelectric coupling at room temperature. Under the stimulus of...

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Main Authors: Yuying Yang, Zhiyan Chen, Xiangqian Lu, Xiaotao Hao, Wei Qin
Format: Article
Language:English
Published: Nature Portfolio 2021-08-01
Series:npj Flexible Electronics
Online Access:https://doi.org/10.1038/s41528-021-00120-0
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author Yuying Yang
Zhiyan Chen
Xiangqian Lu
Xiaotao Hao
Wei Qin
author_facet Yuying Yang
Zhiyan Chen
Xiangqian Lu
Xiaotao Hao
Wei Qin
author_sort Yuying Yang
collection DOAJ
description Abstract The organic magnetoelectric complexes are beneficial for the development on flexible magnetoelectric devices in the future. In this work, we fabricated all organic multiferroic ferromagnetic/ferroelectric complexes to study magnetoelectric coupling at room temperature. Under the stimulus of external magnetic field, the localization of charge inside organic ferromagnets will be enhanced to affect spin–dipole interaction at organic multiferroic interfaces, where overall ferroelectric polarization is tuned to present an organic magnetoelectric coupling. Moreover, the magnetoelectric coupling of the organic ferromagnetic/ferroelectric complex is tightly dependent on incident light intensity. Decreasing light intensity, the dominated interfacial interaction will switch from spin–dipole to dipole–dipole interaction, which leads to the magnetoelectric coefficient changing from positive to negative in organic multiferroic magnetoelectric complexes.
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spelling doaj.art-74dcece38f814ecd8df365dbcfbf6a532022-12-21T19:27:40ZengNature Portfolionpj Flexible Electronics2397-46212021-08-01511610.1038/s41528-021-00120-0All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interactionYuying Yang0Zhiyan Chen1Xiangqian Lu2Xiaotao Hao3Wei Qin4School of Physics, State Key Laboratory of Crystal Materials, Shandong UniversitySchool of Physics, State Key Laboratory of Crystal Materials, Shandong UniversitySchool of Physics, State Key Laboratory of Crystal Materials, Shandong UniversitySchool of Physics, State Key Laboratory of Crystal Materials, Shandong UniversitySchool of Physics, State Key Laboratory of Crystal Materials, Shandong UniversityAbstract The organic magnetoelectric complexes are beneficial for the development on flexible magnetoelectric devices in the future. In this work, we fabricated all organic multiferroic ferromagnetic/ferroelectric complexes to study magnetoelectric coupling at room temperature. Under the stimulus of external magnetic field, the localization of charge inside organic ferromagnets will be enhanced to affect spin–dipole interaction at organic multiferroic interfaces, where overall ferroelectric polarization is tuned to present an organic magnetoelectric coupling. Moreover, the magnetoelectric coupling of the organic ferromagnetic/ferroelectric complex is tightly dependent on incident light intensity. Decreasing light intensity, the dominated interfacial interaction will switch from spin–dipole to dipole–dipole interaction, which leads to the magnetoelectric coefficient changing from positive to negative in organic multiferroic magnetoelectric complexes.https://doi.org/10.1038/s41528-021-00120-0
spellingShingle Yuying Yang
Zhiyan Chen
Xiangqian Lu
Xiaotao Hao
Wei Qin
All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction
npj Flexible Electronics
title All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction
title_full All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction
title_fullStr All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction
title_full_unstemmed All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction
title_short All organic multiferroic magnetoelectric complexes with strong interfacial spin-dipole interaction
title_sort all organic multiferroic magnetoelectric complexes with strong interfacial spin dipole interaction
url https://doi.org/10.1038/s41528-021-00120-0
work_keys_str_mv AT yuyingyang allorganicmultiferroicmagnetoelectriccomplexeswithstronginterfacialspindipoleinteraction
AT zhiyanchen allorganicmultiferroicmagnetoelectriccomplexeswithstronginterfacialspindipoleinteraction
AT xiangqianlu allorganicmultiferroicmagnetoelectriccomplexeswithstronginterfacialspindipoleinteraction
AT xiaotaohao allorganicmultiferroicmagnetoelectriccomplexeswithstronginterfacialspindipoleinteraction
AT weiqin allorganicmultiferroicmagnetoelectriccomplexeswithstronginterfacialspindipoleinteraction