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Featured researches published by Atsuki Terabe.


Japanese Journal of Applied Physics | 2011

Precursor Effect on Hydrothermal Synthesis of Sodium Potassium Niobate Fine Particles and Their Piezoelectric Properties

Kiyoshi Kanie; Hideto Mizutani; Atsuki Terabe; Yoshiki Numamoto; Shintaro Tsukamoto; Hirofumi Takahashi; Masafumi Nakaya; Junji Tani; Atsushi Muramatsu

Controlled synthesis of sodium potassium niobate (NaxK1-xNbO3: NKN) fine particles with different K/Na ratios was successfully achieved by the two-step hydrothermal reaction at 100 °C for 24 h and 200–250 °C for 3 h using niobium pentachloride as a soluble precursor. As a result of the effect of the K/Na ratio in the starting solution, NKN particles with an orthorhombic sodium niobate were formed in the NaOH/KOH ratios from 10/8 to 7/11. When the NaOH/KOH ratio was adjusted to 10/8, cubic-shaped particles were obtained, and the mean particle size with the size distribution was 3.0±1.2 µm. In contrast, by aging at 250 °C, NKN particles with orthorhombic potassium niobate crystal structure were obtained in the NaOH/KOH ratios from 5/13 to 1/17. Furthermore, monodispersed and octahedral-shaped NKN fine particles with a tetragonal crystal structure were formed as a single phase at 200 °C with the NaOH/KOH ratio of 6/12. The octahedral-shaped particles had a hierarchical built-up structure of cubic-shaped nanoparticles. The sodium and potassium ratio in the NKN crystal structures was further characterized by Rietveld analysis. All the NKN ceramics, prepared starting from the present hydrothermal method, had a highly porous structure. However, these ceramics exhibited high d33 values of ca. 100 pC/N. This result means that the octahedral-shaped NKN particles have high potential as lead-free piezoelectric materials.


Archive | 2006

Process for producing fine particle of rutile-form titanium oxide

Hideto Mizutani; Atsuki Terabe


Archive | 2012

Hexagonal-cylinder-shaped zinc oxide particles, production method for same, and cosmetic material, heat-dissipating filler, heat-dissipating resin composition, heat-dissipating grease, and heat-dissipating coating composition having same blended therein

Satoru Sueda; Mitsuo Hashimoto; Atsuki Terabe; Nobuo Watanabe; Koichiro Magara


Archive | 2010

Zinc oxide particles, process for production of the particles, heat-dissipating filler, heat-dissipating resin composition, heat-dissipating grease, and heat-dissipating coating composition

Satoru Sueda; 末田学; Atsuki Terabe; 寺部敦樹; Hiroyuki Izumikawa; 泉川博幸; Mitsuo Hashimoto; 橋本充央


Archive | 2010

METHOD FOR PRODUCING ALKALI METAL NIOBATE PARTICLES, AND ALKALI METAL NIOBATE PARTICLES

Atsushi Muramatsu; Kiyoshi Kanie; Atsuki Terabe; Yasuhiro Okamoto; Hideto Mizutani; Satoru Sueda; Hirofumi Takahashi


Archive | 2012

Zinc oxide particles, production method for same, cosmetic material, heat-dissipating filler, heat-dissipating resin composition, heat-dissipating grease, and heat-dissipating coating composition

Satoru Sueda; Mitsuo Hashimoto; Atsuki Terabe; Nobuo Watanabe; Koichiro Magara


Archive | 2012

Hexagonal plate-shaped zinc oxide particles, method for production of the same, and cosmetic, heat releasing filler, heat releasing resin composition, heat releasing grease, and heat releasing coating composition comprising the same

Satoru Sueda; Mitsuo Hashimoto; Atsuki Terabe; Nobuo Watanabe; Koichiro Magara


Archive | 2011

Composite particles and process for production thereof

T. Yamamoto; Harunobu Saito; Mika Onai; Atsuki Terabe; Masaru Mikami


Archive | 2006

Method of Producing Rutile Titanium Dioxide Fine Particles

Hideto Mizutani; Atsuki Terabe


Archive | 2013

Spherical zinc oxide particles of aggregated lamellar zinc oxide, method of preparing same, cosmetic and heat-dissipating filler

Satoru Sueda; Mitsuo Hashimoto; Atsuki Terabe; Koichiro Magara

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Shinichi Kimura

Tokyo University of Science

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