Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3

Semiconductor research is undergoing transformative changes thanks to the discovery and development of novel materials. The authors disclose the role of electron-phonon interaction and impurity scattering in a novel ultrawide bandgap perovskite oxide, paving the way for new applications in high-powe...

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Autores principales: Tristan K. Truttmann, Jin-Jian Zhou, I-Te Lu, Anil Kumar Rajapitamahuni, Fengdeng Liu, Thomas E. Mates, Marco Bernardi, Bharat Jalan
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/f89c6ff0d905485191f23a0b15d2268a
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spelling oai:doaj.org-article:f89c6ff0d905485191f23a0b15d2268a2021-11-14T12:27:51ZCombined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO310.1038/s42005-021-00742-w2399-3650https://doaj.org/article/f89c6ff0d905485191f23a0b15d2268a2021-11-01T00:00:00Zhttps://doi.org/10.1038/s42005-021-00742-whttps://doaj.org/toc/2399-3650Semiconductor research is undergoing transformative changes thanks to the discovery and development of novel materials. The authors disclose the role of electron-phonon interaction and impurity scattering in a novel ultrawide bandgap perovskite oxide, paving the way for new applications in high-power electronics.Tristan K. TruttmannJin-Jian ZhouI-Te LuAnil Kumar RajapitamahuniFengdeng LiuThomas E. MatesMarco BernardiBharat JalanNature PortfolioarticleAstrophysicsQB460-466PhysicsQC1-999ENCommunications Physics, Vol 4, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Astrophysics
QB460-466
Physics
QC1-999
spellingShingle Astrophysics
QB460-466
Physics
QC1-999
Tristan K. Truttmann
Jin-Jian Zhou
I-Te Lu
Anil Kumar Rajapitamahuni
Fengdeng Liu
Thomas E. Mates
Marco Bernardi
Bharat Jalan
Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3
description Semiconductor research is undergoing transformative changes thanks to the discovery and development of novel materials. The authors disclose the role of electron-phonon interaction and impurity scattering in a novel ultrawide bandgap perovskite oxide, paving the way for new applications in high-power electronics.
format article
author Tristan K. Truttmann
Jin-Jian Zhou
I-Te Lu
Anil Kumar Rajapitamahuni
Fengdeng Liu
Thomas E. Mates
Marco Bernardi
Bharat Jalan
author_facet Tristan K. Truttmann
Jin-Jian Zhou
I-Te Lu
Anil Kumar Rajapitamahuni
Fengdeng Liu
Thomas E. Mates
Marco Bernardi
Bharat Jalan
author_sort Tristan K. Truttmann
title Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3
title_short Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3
title_full Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3
title_fullStr Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3
title_full_unstemmed Combined experimental-theoretical study of electron mobility-limiting mechanisms in SrSnO3
title_sort combined experimental-theoretical study of electron mobility-limiting mechanisms in srsno3
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/f89c6ff0d905485191f23a0b15d2268a
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