Implementing Room-Temperature Multiferroism by Exploiting Hexagonal-Orthorhombic Morphotropic Phase Coexistence in LuFeO3 Thin Films

Room‐temperature multiferroism in LuFeO3 (LFO) films is demonstrated by exploiting the orthorhombic–hexagonal (o–h) morphotrophic phase coexistence. The LFO film further reveals a magnetoelectric coupling effect that is not shown in single‐phase (h‐ or o‐) LFO. The observed multiferroism is attribut...

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Veröffentlicht in:Advanced materials (Weinheim) 2016-09, Vol.28 (34), p.7430-7435
Hauptverfasser: Song, Seungwoo, Han, Hyeon, Jang, Hyun Myung, Kim, Young Tae, Lee, Nam-Suk, Park, Chan Gyung, Kim, Jeong Rae, Noh, Tae Won, Scott, James F.
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container_end_page 7435
container_issue 34
container_start_page 7430
container_title Advanced materials (Weinheim)
container_volume 28
creator Song, Seungwoo
Han, Hyeon
Jang, Hyun Myung
Kim, Young Tae
Lee, Nam-Suk
Park, Chan Gyung
Kim, Jeong Rae
Noh, Tae Won
Scott, James F.
description Room‐temperature multiferroism in LuFeO3 (LFO) films is demonstrated by exploiting the orthorhombic–hexagonal (o–h) morphotrophic phase coexistence. The LFO film further reveals a magnetoelectric coupling effect that is not shown in single‐phase (h‐ or o‐) LFO. The observed multiferroism is attributed to the combination of sufficient polarization from h‐LFO and net magnetization from o‐LFO.
doi_str_mv 10.1002/adma.201601989
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source Wiley Online Library Journals Frontfile Complete
subjects hexagonal ferrites
LuFeO3
magnetoelectric coupling
morphotropic phase mixtures
multiferroics
title Implementing Room-Temperature Multiferroism by Exploiting Hexagonal-Orthorhombic Morphotropic Phase Coexistence in LuFeO3 Thin Films
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