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Fingerprint Dive into the research topics where Katsuro Hayashi is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 4 Similar Profiles
Ions Chemical Compounds
Anions Chemical Compounds
Electrons Chemical Compounds
Oxides Chemical Compounds
Oxygen Chemical Compounds
Crystals Chemical Compounds
Barium titanate Chemical Compounds
Negative ions Engineering & Materials Science

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Research Output 1996 2019

  • 4163 Citations
  • 37 h-Index
  • 98 Article
  • 4 Conference article
  • 3 Review article
  • 1 Letter

A highly conductive Na 3 V 2 (PO 4 ) 3 ceramic sheet prepared by tape-casting method

Wang, H., Hasegawa, J., Akiyama, Y., Yamamoto, T., Inoishi, A., Akamatsu, H., Inada, M., Ishihara, T. & Hayashi, K., May 10 2019, In : Electrochimica Acta. 305, p. 197-203 7 p.

Research output: Contribution to journalArticle

Tapes
Casting
Glass
Redox reactions
Electrolytes

Characterization of an AX Compound Derived from Ti 2 SC MAX Phase

Hasegawa, J., Kawahara, K., Shima, K., Inada, M., Enomoto, N. & Hayashi, K., May 8 2019, In : European Journal of Inorganic Chemistry. 2019, 17, p. 2312-2317 6 p.

Research output: Contribution to journalArticle

Electrochemical etching
Acetone
Spark plasma sintering
Titanium
Sulfur

Insights into Sodium Ion Transfer at the Na/NASICON Interface Improved by Uniaxial Compression

Uchida, Y., Hasegawa, J., Shima, K., Inada, M., Enomoto, N., Akamatsu, H. & Hayashi, K., Apr 22 2019, In : ACS Applied Energy Materials. 2, 4, p. 2913-2920 8 p.

Research output: Contribution to journalArticle

Aluminum Oxide
Sodium
Solid electrolytes
Ions
Metal pressing

Kinetic approach for the adsorption-photodecomposition properties of mesoporous silica-titania

Hirata, S., Inada, M., Enomoto, N., Hayashi, K. & Hojo, J., Apr 1 2019, In : Journal of the Ceramic Society of Japan. 127, 4, p. 242-248 7 p.

Research output: Contribution to journalArticle

Open Access
photodecomposition
Acetaldehyde
acetaldehyde
Silicon Dioxide
titanium
1 Citation (Scopus)

Sodium titanium oxide bronze nanoparticles synthesized: Via concurrent reduction and Na + -doping into TiO 2 (B)

Hasegawa, J., Tanaka, M., Vequizo, J. J. M., Yamakata, A., Hojo, H., Kobayashi, M., Kakihana, M., Inada, M., Akamatsu, H. & Hayashi, K., Jan 21 2019, In : Nanoscale. 11, 3, p. 1442-1450 9 p.

Research output: Contribution to journalArticle

Titanium oxides
Bronze
Gene Conversion
Sodium
Doping (additives)