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Masato Murakami

Researcher at Shibaura Institute of Technology

Publications -  812
Citations -  16032

Masato Murakami is an academic researcher from Shibaura Institute of Technology. The author has contributed to research in topics: Superconductivity & Flux pinning. The author has an hindex of 54, co-authored 769 publications receiving 15031 citations. Previous affiliations of Masato Murakami include Nagoya University & Vienna University of Technology.

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Journal ArticleDOI

1471 A new proposal for skin wound healing: The combination of HMGB1 B-Box and non-equilibrium atmospheric pressure plasma

TL;DR: In this paper , the authors evaluated the synergistic effect of NEADP on HMGB1 B-box in normal human keratinocytes and found that the effect was limited.
Journal ArticleDOI

Field-Trapping Performance of Drilled MgB2 Bulk Superconductor Embedded With Bi-In-Sn Alloy and Al-Rod Using Pulse-Field Magnetization Processes

TL;DR: In this article , the degradation of trapped fields due to the occurrences of flux jumps was investigated in bulk MgB 2 superconductor due to low melting alloy of Bi-In-Sn alloy and aluminum rods within the holes.
Journal ArticleDOI

Processing and Characterization of Charcoal Added Bulk MgB2 Superconductor

TL;DR: In this article, the flux pinning and critical current density of disk-shaped MgB2 bulk superconductors were improved by using locally obtained charcoal at optimized processing conditions, and the effects of the dopants on superconducting properties especially the field dependence of J c have been determined.
Book ChapterDOI

Jc-B Properties of Melt-Processed (Nd,Eu,Gd)-Ba-Cu-O with Gd2BaCuO5 Second Phase

TL;DR: In this article, the effects of Gd2BaCuO5 (Gd211) second phase and Pt addition on the microstructure and Jc-B properties of OCMG-processed (Nd0.33Gd 0.33Eu0.3) Ba2Cu3Oy (NEG123) system with transmission electron microscopy and DC magnetization measurements were investigated.
Journal ArticleDOI

Processing and Characterization of Bulk FeSe

TL;DR: In this article, the effect of processing conditions on the structure and physical properties of polycrystalline samples of Ca0.8Fe2Se2 prepared via solid state reaction was investigated.