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A strategy for fabricating micro-scale freestanding single-crystalline complex oxide device arrays

Published 19 Aug 2024 in cond-mat.mtrl-sci and physics.app-ph | (2408.10071v2)

Abstract: We present a general fabrication strategy for freestanding single-crystalline complex oxide device arrays via wet chemical etching-based microfabrication processes and epitaxial lift-off. Here, we used 0.5Ba(Zr${0.2}$Ti${0.8}$)O$3$-0.5Ba(Zr${0.7}$Ti${0.3}$)O$_3$ (BCZT) as a model relaxor ferroelectric oxide system and La${0.7}$Sr$_{0.3}$MnO$_3$ as the sacrificial layer for demonstration. Arrays of SrRuO$_3$ (SRO) / BCZT / SRO ferroelectric capacitor mesas were first defined and isolated on the growth wafer, and then they were released using epitaxial lift-off with lithography-defined surrounding etching holes, after which the freestanding device arrays were integrated onto a glass substrate. Our proposed strategy sheds light on preparing various freestanding single-crystalline oxide devices and paves the way for their heterogeneous integration onto arbitrary substates.

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