Modulation of Abnormal Poisson’s Ratios and Electronic Properties in Mixed-Valence Perovskite Manganite Films

Epitaxy and misfit strain imposed by underlying substrates have been intensively used to tailor the microstructure and electronic properties of oxide films, but this approach is largely restricted by commercially limited substrates. In contrast to the conventional epitaxial misfit strains with a pos...

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Bibliographic Details
Published in:ACS applied materials & interfaces Vol. 10; no. 21; pp. 18029 - 18035
Main Authors: Chen, Shanquan, Guan, Changxin, Ke, Shanming, Zeng, Xierong, Huang, Chuanwei, Hu, Sixia, Yen, Fei, Huang, Haoliang, Lu, Yalin, Chen, Lang
Format: Journal Article
Language:English
Published: United States American Chemical Society 30-05-2018
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Summary:Epitaxy and misfit strain imposed by underlying substrates have been intensively used to tailor the microstructure and electronic properties of oxide films, but this approach is largely restricted by commercially limited substrates. In contrast to the conventional epitaxial misfit strains with a positive Poisson’s constant, we show here a tunable Poisson’s ratio with anomalous values from negative, zero, to positive. This permits effective control over the out-of-plane lattice parameters that strongly correlate the magnetic and transport properties in perovskite mixed-valence La1–x Sr x MnO3 thin films. Our results provide an unconventional approach to better modulation and understanding of elastic-mediated microstructures and physical properties of oxide films by engineering the Poisson’s ratios.
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ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.7b19580