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Experimental progress in freestanding oxide membranes designed by epitaxy

delete2025-01-17
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OA
AI
H
Harbola, V
R
Ruijuan Xu
S
Seung Sae Hong
DOI:10.1080/23746149.2025.2450538delete
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Abstract

Abstract

En 中文
Transition metal oxides are renowned for a plethora of functional properties of both scientific and technological implications. Recent advances in freestanding oxide membranes have introduced many opportunities for oxide materials inaccessible by bulk crystals and thin films. The advent of new low-dimensional oxide materials, leveraging both precise epitaxial design and the flexibility of freestanding geometries, offers a unique platform for tuning strain, engineering heterointerfaces, and enabling novel device architectures. In this article, we highlight key experimental progress in the field, spanning from innovative materials synthesis to emerging device applications.
Keywords:
Complex oxide
oxide membrane
oxide epitaxy

Journal

Advances in Physics cover
Advances in Physics
IF:
13.8
Papers:
546
Citations:
6.3K

Organization

M
Max Planck Inst Solid State Res
Scholars:
127
Papers: 51
Citations: 19
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