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Materials Science

D-Index
53
Citations
11935
World Ranking
9140
National Ranking
532

Overview

Uichiro Mizutani is affiliated with Toyota Motor Corporation in Japan and works primarily in the fields of Physics and Astronomy as well as Materials Science. Their research spans several subfields including Atomic and Molecular Physics, and Optics; Materials Chemistry; Electronic, Optical and Magnetic Materials; Inorganic Chemistry; and Condensed Matter Physics.

The main research topics covered by Mizutani's work encompass Semiconductor materials and interfaces, Advanced Chemical Physics Studies, Heusler alloys focusing on electronic and magnetic properties, Inorganic Fluorides and Related Compounds, Luminescence Properties of Advanced Materials, Advanced Condensed Matter Physics, and Quantum and electron transport phenomena.

Their recent publications illustrate a range of research interests and contributions in materials science and physics. Notable papers include:

  • The original concepts of the Hume-Rothery rule extended to alloys and compounds whose bonding is metallic, ionic, or covalent, or a changing mixture of these (2020, Progress in Materials Science)
  • Oxyfluoride Cathode for All-Solid-State Fluoride-Ion Batteries with Small Volume Change Using Three-Dimensional Diffusion Paths (2022, Chemistry of Materials)
  • Critical behavior of the specific heat in Ti-Si amorphous alloys at the metal-insulator transition (2022, Physical review. B./Physical review. B)
  • Quantitative Evaluation of Seebeck Coefficient using Linearized Boltzmann Transport Equation for Fe2VAl-Based Compounds (2024, Journal of Phase Equilibria and Diffusion)
  • The Hume-Rothery Electron Concentration Rule Extended to Alloys and Compounds whose Ionic and/or Covalent Bondings are Increased (2021, Materia Japan)

Mizutani frequently publishes in journals such as the Journal of Phase Equilibria and Diffusion, Progress in Materials Science, Chemistry of Materials, Physical Review B, and Materia Japan.

The scientist collaborates with several coauthors, including Hirokazu Sato, Hidetoshi Miyazaki, Yoichi Nishino, T. B. Massalski, and Yanchang Wang. This group reflects a network of researchers in related fields, contributing to studies on advanced materials and condensed matter physics.

Best Publications

  • An Oxide Single Crystal with High Thermoelectric Performance in Air

    Ryoji Funahashi;Ichiro Matsubara;Hiroshi Ikuta;Tsunehiro Takeuchi

  • Hume-Rothery Rules for Structurally Complex Alloy Phases

    Uichiro Mizutani

  • Electronic structure of metallic glasses

    Uichiro Mizutani

  • Thermal and transport properties of the Heusler-type Fe 2 VAl 1 − x Ge x ( 0 ≤ x ≤ 0.20 ) alloys: Effect of doping on lattice thermal conductivity, electrical resistivity, and Seebeck coefficient

    Yoichi Nishino;S. Deguchi;U. Mizutani

  • Melt-processed Sm - Ba - Cu - O superconductors trapping strong magnetic field

    H Ikuta;A Mase;Y Yanagi;M Yoshikawa

  • Contribution of electronic structure to the large thermoelectric power in layered cobalt oxides

    Tsunehiro Takeuchi;Takeshi Kondo;Tsuyoshi Takami;Hirofumi Takahashi

  • Effect of off-stoichiometry on the transport properties of the Heusler-type Fe2VAl compound

    Yoichi Nishino;H. Kato;M. Kato;U. Mizutani

  • Pulsed-field magnetization applied to high-Tc superconductors

    U. Mizutani;T. Oka;Y. Itoh;Y. Yanagi

  • Electronic Properities of the Single-Grained Icosahedral Phase of Al-Li-Cu

    Kaoru Kimura;Hiroki Iwahashi;Tatsuo Hashimoto;Shin Takeuchi

  • Pulsed Field Magnetization of Melt-Processed Y-Ba-Cu-O Superconducting Bulk Magnet

    Yoshitaka Itoh;Uichiro Mizutani

  • Electronic structure, electron transport properties, and relative stability of icosahedral quasicrystals and their 1/1 and 2/1 approximants in the Al-Mg-Zn alloy system.

    Tsunehiro Takeuchi;Uichiro Mizutani

  • Superconducting and mechanical properties of YBCO-Ag composite superconductors

    T. Nishio;Y. Itoh;F. Ogasawara;M. Suganuma

  • High-Temperature Superconducting Motor Using Y-Ba-Cu-O Bulk Magnets

    Yoshitaka Itoh;Yousuke Yanagi;Masaaki Yoshikawa;Tetsuo Oka

  • Effect of Silicon Substitution on Thermoelectric Properties of Heusler-type Fe 2 VAl Alloy

    Hideaki Kato;Masaaki Kato;Yoichi Nishino;Uichiro Mizutani

  • Interpretation of the Hume–Rothery rule in complex electron compounds: γ-phase Cu5Zn8 Alloy, FK-type Al30Mg40Zn30 and MI-type Al68Cu7Ru17Si8 1/1–1/1–1/1 approximants

    U. Mizutani;T. Takeuchi;H. Sato

  • Critical current density and mechanical strength of YBa2Cu3O7-δ superconducting composites containing Zr, Ag and Y2BaCuO5 dispersions by melt-processing

    Tetsuo Oka;Y. Itoh;Y. Yanagi;H. Tanaka

  • Amorphization in an immiscible CuV system by mechanical alloying and structure observed by neutron diffraction

    T. Fukunaga;M. Mori;K. Inou;U. Mizutani

  • Effect of mechanical alloying beyond the completion of glass formation for Ni-Zr alloy powders

    Uichiro Mizutani;Chung Hyo Lee

  • Doping effects on thermoelectric properties of the pseudogap Fe2VAl system

    Hitoshi Matsuura;Yoichi Nishino;Uichiro Mizutani;Shigeru Asano

  • Experimental demonstration of thermoacoustic energy conversion in a resonator.

    Tetsushi Biwa;Yusuke Tashiro;Uichiro Mizutani;Motoki Kozuka

  • Electron transport properties of thermodynamically stable Al-Cu-Ru icosahedral quasicrystals

    U Mizutani;Y Sakabe;T Shibuya;K Kishi

  • Low Temperature Pulsed Field Magnetization of Melt-Processed Y-Ba-Cu-O Superconducting Bulk Magnet

    Yousuke Yanagi;Yoshitaka Itoh;Masaaki Yoshikawa;Tetsuo Oka

Frequent Co-Authors

Ryoji Funahashi
Ryoji Funahashi National Institute of Advanced Industrial Science and Technology
Shik Shin
Shik Shin University of Tokyo
Tamotsu Kondow
Tamotsu Kondow University of Tokyo
Ryoji Asahi
Ryoji Asahi Toyota Motor Corporation (Japan)
Kazuaki Fukamichi
Kazuaki Fukamichi Tohoku University
Yoshiaki Fukushima
Yoshiaki Fukushima Advanced Institute of Materials Science
Shin Takeuchi
Shin Takeuchi Tokyo University of Science
H.-J. Güntherodt
H.-J. Güntherodt University of Basel
An Pang Tsai
An Pang Tsai Tohoku University
Toshiji Kanaya
Toshiji Kanaya High Energy Accelerator Research Organization

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