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Xiaotian Wang

Researcher at University of Wollongong

Publications -  50
Citations -  1476

Xiaotian Wang is an academic researcher from University of Wollongong. The author has contributed to research in topics: Magnetic moment & Lattice constant. The author has an hindex of 19, co-authored 46 publications receiving 1071 citations. Previous affiliations of Xiaotian Wang include Southwest University & Hebei University of Technology.

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Recent advances in the Heusler based spin-gapless semiconductors

TL;DR: In this article, the progress on the Heusler-based materials with spin-gapless semiconducting behavior is reviewed, including half-Heusler compounds, full-heusler compound, DO3-type compounds, LiMgPdSn-type quaternary compounds, and DO3 type compounds.
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Rare earth-based quaternary Heusler compounds MCoVZ (M = Lu, Y; Z = Si, Ge) with tunable band characteristics for potential spintronic applications

TL;DR: Under uniform strain, there are natural physical transitions from spin-filter magnetic semiconductor to spin-gapless semiconductor (SGS) to half-metal (HM) for rare earth-based equiatomic quaternary Heusler (EQH) compounds with the formula LuCoVZ.
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Recent advances in Dirac spin-gapless semiconductors

TL;DR: In this article, a simple classification of spin-gapless semiconductors (SGSs) based on their unique band structures is proposed, which can be divided into two types: parabolic and Dirac-like linear.
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Structural, electronic, magnetic, half-metallic, mechanical, and thermodynamic properties of the quaternary Heusler compound FeCrRuSi: A first-principles study

TL;DR: The results reveal that FeCrRuSi is a half-metallic material (HMM) with a total magnetic moment of 2.0 μB in agreement with the well-known Slater-Pauling rule and is found to exist in an EQH type structure with the presence of some B2 disorder.
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Origin of the half-metallic band-gap in newly designed quaternary Heusler compounds ZrVTiZ (Z = Al, Ga)

TL;DR: In this paper, first-principles calculations have been used to investigate the electronic structures, magnetic properties, and half-metallic nature of the newly designed quaternary Heusler compounds ZrVTiAl and Zr VTiGa.