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Brianna L. Musico

Researcher at University of Tennessee

Publications -  25
Citations -  601

Brianna L. Musico is an academic researcher from University of Tennessee. The author has contributed to research in topics: Single crystal & Perovskite (structure). The author has an hindex of 8, co-authored 19 publications receiving 300 citations.

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The emergent field of high entropy oxides: Design, prospects, challenges, and opportunities for tailoring material properties

TL;DR: In this article, the authors highlight some current research developments and possible applications while also providing an overview of the many successfully synthesized HEO systems to date, along with a few case studies, challenges and future possibilities afforded by this novel class of materials.
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Single-crystal high entropy perovskite oxide epitaxial films

TL;DR: In this article, a single-crystal epitaxial thin films of a high entropy perovskite oxide are synthesized using Pulsed laser deposition to grow the configurationally disordered $AB{\mathrm{O}}_{3}$ pervskite on MgO substrates.
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Temperature dependence of elastic and plastic deformation behavior of a refractory high-entropy alloy.

TL;DR: This work has investigated the elastic and plastic deformation behaviors of a single BCC NbTaTiV refractory HEA at elevated temperatures using integrated experimental efforts and theoretical calculations, and reveals a temperature-dependent elastic anisotropic deformation behavior.
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Tunable magnetic ordering through cation selection in entropic spinel oxides

TL;DR: In this article, the effects of multicomponent material design on the structural, magnetic, and chemical properties are explored using dc magnetometry in conjunction with x-ray diffraction.
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Single Crystal High Entropy Perovskite Oxide Epitaxial Films

TL;DR: In this paper, the first examples of single crystal epitaxial thin films of a high entropy perovskite oxide are synthesized using Pulsed Laser Deposition (PLD) and X-ray diffraction and scanning transmission electron microscopy demonstrate that the films are single phase with excellent crystallinity and atomically abrupt interfaces to the underlying substrates.