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Masanori Nagao

University of Yamanashi

SCHOLARLY PAPERS

7

DOWNLOADS

324

TOTAL CITATIONS

0

Scholarly Papers (7)

Effects of Equivalent Composition on Superconducting Properties of High-Entropy Reobis2 (Re = La, CE, Pr, Nd, Sm, Gd) Single Crystals

Number of pages: 34 Posted: 28 Apr 2022
University of Yamanashi, University of Yamanashi, Hokkaido University, Nagoya Institute of Technology, Tokyo Metropolitan University, University of Yamanashi, University of Yamanashi, National Institute for Materials Science and University of Yamanashi
Downloads 60 (976,517)

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A. Rare earth alloys and compounds, Superconductors, B. Crystal growth, C. Anisotropy, Entropy, Heat capacity, Valence fluctuations, D. NEXAFS, X-ray diffraction

Effects of Equivalent Composition on Superconducting Properties of High-Entropy Reobis2 (Re = La, CE, Pr, Nd, Sm, Gd) Single Crystals

Number of pages: 36 Posted: 10 Aug 2022
University of Yamanashi, University of Yamanashi, Hokkaido University, Nagoya Institute of Technology, Tokyo Metropolitan University, University of Yamanashi, University of Yamanashi, National Institute for Materials Science and University of Yamanashi
Downloads 30 (1,356,108)

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BiS2-based superconductors, Single crystals, Atomic ordering, Mixed entropy, Layered compounds, Valence fluctuations

2.

Growth and Characterization of Superconducting Bulk Single Crystal [(Snse)1+Δ]M(Nbse2) Misfit Layer Compounds

Number of pages: 33 Posted: 03 Oct 2023
University of Yamanashi, University of Yamanashi, University of Yamanashi, University of Yamanashi, University of Yamanashi, University of Yamanashi and University of Yamanashi
Downloads 78 (830,555)

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Misfit Compound, Layered Superconductor, Flux Growth, Single Crystals

3.

Effects of Lamp Filament Alignment, Mirror–Lamp System Position, and Downward Tilt During Growth of Lanthanum- and Cerium-Doped Gadolinium Pyrosilicate Crystal Using Optical Floating Zone Method

Number of pages: 24 Posted: 14 Mar 2023
University of Yamanashi, University of Yamanashi, University of Yamanashi, University of Yamanashi, Chittagong University of Engineering and Technology, Tohoku University, Tohoku University, Tohoku University, Tohoku University and University of Yamanashi
Downloads 46 (1,109,210)

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A1. Heat transfer, A1. Interfaces, A2. Floating zone technique, A2. Growth from melt, B1. Gadolinium compounds, B1. Oxide

4.

Growth and Phase Transition of Sr3zr2o7 Single Crystals

Number of pages: 19 Posted: 25 Apr 2023
University of Yamanashi, University of Yamanashi, Pennsylvania State University, Kyoto University, Hitachi High-Tech Corporation, Hitachi High-Tech Corporation, University of Yamanashi, University of Yamanashi, Pennsylvania State University - Department of Materials Science and Engineering, Kyoto University and University of Yamanashi
Downloads 35 (1,249,711)

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A1. Phase diagrams, A2. Growth from melt, A2. Traveling solvent zone growth, A2. Single crystal growth, B1. Oxide

5.

Czochralski Growth and Composition Control of Tb3ga5o12 Single Crystals

Number of pages: 16 Posted: 17 Feb 2025
affiliation not provided to SSRN, University of Yamanashi, affiliation not provided to SSRN, affiliation not provided to SSRN, University of Yamanashi, University of Yamanashi and University of Yamanashi
Downloads 32 (1,304,549)

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Characterization, Defect, Czochralski method, Oxide, Rare earth compound

6.

Revisited in Electrical Transport Properties of (Las)1+ Δ (Nbs2) Misfit-Layered Compounds

Number of pages: 22 Posted: 04 Mar 2025
University of Yamanashi, University of Yamanashi, University of Yamanashi, Hokkaido University and University of Yamanashi
Downloads 31 (1,304,549)

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Misfit-layered compounds, Electrical transport properties, Chemical vapor transport method

7.

Alkali metal halide flux dependence of precipitated phases into Mn(NbS2)4 single crystal growth

Number of pages: 21 Posted: 26 Mar 2026
University of Yamanashi, University of Yamanashi, University of Yamanashi, University of Yamanashi and University of Yamanashi
Downloads 12 (1,534,404)

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single crystal growth, Flux method, Alkali metal halides flux, Formation energy, Transition metal dichalcogenide