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Dive into the research topics where Kunitaka Fujiyoshi is active.

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Featured researches published by Kunitaka Fujiyoshi.


Key Engineering Materials | 2007

Crystallinity of Barium Titanate Nanoparticles Synthesized by Sol-Gel Method

Teruhisa Makino; Masashi Arimura; Kunitaka Fujiyoshi; Yoko Yamashita; Makoto Kuwabara

We synthesized barium titanate (BaTiO3) nanoparticles by sol-gel process and investigated their crystallization behavior using differential scanning calorimetry and X-ray diffraction. BaTiO3 nanoparticles with various degrees of crystallinity were obtained by adjusting synthesis conditions. Under aging conditions that do not allow dealcholization reaction to complete, many hydroxyl ligands remain in as-synthesized BaTiO3 nanoparticles, resulting in the formation of voids or defects in the nanoparticles after calcination. It is essential to use high concentration alkoxides precursor solutions for producing BaTiO3 nanoparticles with high crystallinity at low temperature.


Key Engineering Materials | 2007

Sedimentation of Barium Titanate Nanoparticles in a Suspension under Application of an Electric Field

Masashi Arimura; Teruhisa Makino; Kunitaka Fujiyoshi; Yoko Yamashita; Makoto Kuwabara

Barium titanate nanoparticle (BT-NP) suspensions were prepared by dispersing sol-gel-derived BT-NPs in ethylene glycol monomethyl ether (EGMME) under sonication. When an electric field was applied, a part of the BT-NPs in a suspension was deposited on the cathode by electrophoretically deposition and most of the rest of the BT-NPs settled down towards the bottom of a container. The concentration of BT-NPs in the lower part of the container (Cbottom) increased with time until the Cbottom reached a specific concentration (threshold concentration) at which sedimentation of BT-NPs start to occur. The threshold concentration of the nanoparticles sedimentation gave a significant influence upon the aspect of a BT-NPs deposit formed on the cathode.


Key Engineering Materials | 2009

Preparation of Barium Titanate Nanoparticle Thin Films by the Electrophoretic Deposition Method Using Polyacrylic Acid as a Charge-Compensating Agent

Masashi Arimura; Teruhisa Makino; Kunitaka Fujiyoshi; Makoto Kuwabara

Using the electrophoretic deposition (EPD) method, we prepared barium titanate nanoparticle (BT-NP) thin films by depositing BT-NP monodispersed in ethylene glycol monomethyl ether (EGMME) onto an electrically conductive substrate coated with polyacrylic acid (PAA). Deposition efficiency was increased compared to conventional EPD, and the uniformity of the film thickness was also improved as a result of the BT-NPs cohesion effect of the PAA coating on the substrate in addition to the electrophoretic deposition effect of the electric field. When low-molecular-weight PAA was used, the film was reinforced since PAA, which coats the substrate, diffused close to the surface of the BT-NP film during film formation. A crack-free BT-NP film was produced with a film thickness of several micrometers.


Key Engineering Materials | 2004

Effect of the Nano-Sized BaTiO3 Gel Particles on Dielectric Properties of Thin Films

Teruhisa Makino; Masashi Arimura; Yoko Yamashita; Kunitaka Fujiyoshi; Makoto Kuwabara

We synthesized nanocrystalline BaTiO3 particles by sol-gel process and made evaluations concerning their size and crystallinity with TEM, XRD and small angle X-ray scattering (SAXS). The BaTiO3 particles were found to be composed of well-crystallized particles with sizes greater than 5nm and poorly-crystallized (almost amorphous) particles smaller than 3nm. We obtained BaTiO3 ceramic thin films of around 500nm in thickness by spin coating using a suspension of the nanocrystalline particles, followed by firing at 800°C. The quality of BaTiO3 films prepared was strongly dependent on the volume ratio of well-crystallized particles in the suspension. The film which obtained the highest quality, exhibited a capacitance of 530nF/cm (at 1 kHz).


Archive | 2011

Titanium carbide powder and titanium carbide-ceramics composite powder and method for production thereof, and sintered compact from the titanium carbide powder and sintered compact from the titanium carbide/ ceramics composite powders and method for production thereof

Yoko Taniguchi; Teruhisa Makino; Kunitaka Fujiyoshi; Osamu Nakano; Toru Okui; Yusuke Hara


Archive | 2004

Barium titanate powder and method of manufacturing the same

Masashi Arimura; Kunitaka Fujiyoshi; Makoto Kuwabara; Akihisa Makino; Yoko Yamashita; 洋子 山下; 雅司 有村; 誠 桑原; 晃久 牧野; 国孝 藤吉


Archive | 2010

FINE METAL CARBIDE PARTICLES AND METHODS OF MANUFACTURING THE SAME

Yoko Taniguchi; Akihisa Makino; Kunitaka Fujiyoshi; Masashi Arimura; Shuji Ueno; Mitsui Koga


Journal of The Japan Society of Powder and Powder Metallurgy | 2010

Fabrication of High Purity and Nano-sized Tungsten Carbide Particles using Chemical Complex Solution

Yoko Yamashita; Tomohiro Harada; Teruhisa Makino; Kunitaka Fujiyoshi; Shuji Ueno; Mitsui Koga


Archive | 2014

In-Ga-Zn系複合酸化物焼結体およびその製造方法

Kunihiko Nakata; 邦彦 中田; Kunitaka Fujiyoshi; 国孝 藤吉


Archive | 2012

METALLCARBIDFEINTEILCHEN UND VERFAHREN ZU DEREN HERSTELLUNG

Akihisa Makino; Kunitaka Fujiyoshi; Masashi Arimura; Shuji Ueno; Yoko Taniguchi; Mitsui Koga

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