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Dive into the research topics where Hiroshi Kakiuchi is active.

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Featured researches published by Hiroshi Kakiuchi.


international conference on polymers and adhesives in microelectronics and photonics | 2007

A Variety of Silver Nanoparticle Pastes for Fine Electronic Circuit Pattern Formation

Masami Nakamoto; Mari Yamamoto; Yukiyasu Kashiwagi; Hiroshi Kakiuchi; Tomoaki Tsujimoto; Yukio Yoshida

Metal powder-based thick-film pastes are limited to make the electronic circuit pattern on the refractory ceramics or glass, because of their firing temperature. In addition, the line width and space of the circuit pattern are limited over 50 mum. However, the electronic devices are recently demanded to be compact, lightweight and flexible. For this demand, recent progress of nanotechnology has accelerated to develop a new type of materials for electronic devices. From this point of view, much attention has been paid to metal nanoparticles with diameters ranging from several nanometers to tens of nanometers, which may be expected to be fired at low temperature less than 300degC based on their physical property. Using a series of silver nanoparticles, we have developed the low temperature firing silver nanoparticle pastes, including silver nanoparticles stabilized by a series of organic ligands. The silver contents of the manufactured silver nanoparticle pastes are easily controlled ranging from 50 to 90 wt%. The electronic circuit pattern can be formed on a polyimido film by screen printing technique and fired at low temperatures of 150 to 300degC. The formed conductive films exhibit the resistivity compared with that of bulk metal. The film thickness ranges from 2.6 to 30 mum and their resistivity is 2.46 to 40 muOmegacm. This paper describes a variety of silver nanoparticle pastes and the properties of their fired film.


Bulletin of the Chemical Society of Japan | 2010

Synthesis of Ag-Pd Alloy Nanoparticles Suitable as Precursors for Ionic Migration-Resistant Conductive Film

Mari Yamamoto; Hiroshi Kakiuchi; Yukiyasu Kashiwagi; Yukio Yoshida; Toshinobu Ohno; Masami Nakamoto


Archive | 2009

Copper-containing nanoparticle and process for producing same

Masami Nakamoto; 中許 昌美; Mari Yamamoto; 真理 山本; Yukiyasu Kashiwagi; 行康 柏木; Yukio Yoshida; 吉田 幸雄; Hiroshi Kakiuchi; 宏之 垣内; Shinsuke Matsumura; 慎亮 松村


Archive | 2009

Copper-containing nanoparticles and manufacturing method therefor

Masami Nakamoto; Mari Yamamoto; Yukiyasu Kashiwagi; Yukio Yoshida; Hiroshi Kakiuchi; Shinsuke Matsumura


Bulletin of the Chemical Society of Japan | 1967

Study of Epoxy Compounds. XI. Solvent Effects in the Reaction of Benzoic Acid with Phenyl Glycidyl Ether by a Basic Catalyst

Hiroshi Kakiuchi; Takeshi Endo


Journal of The Society of Materials Science, Japan | 2015

Fabrication and Characterization of GaN-Based Blue Light-Emitting Diode with Electrodes Formed by Screen Printing

Tasuku Shigemune; Atsushi Koizumi; Yukiyasu Kashiwagi; Hiroshi Kakiuchi; Yasutaka Takemura; Shinya Furuta; Mari Yamamoto; Masashi Saitoh; Masanari Takahashi; Toshinobu Ohno; Masami Nakamoto; Nobuyoshi Aoyagi; Yukio Yoshida; Koichiro Murahashi; Kuniaki Otsuka; Yasufumi Fujiwara


Archive | 2016

Kupfer-enthaltende Nanoteilchen und Herstellungsverfahren dafür

Masami Nakamoto; Mari Yamamoto; Yukiyasu Kashiwagi; Yukio Yoshida; Hiroshi Kakiuchi; Shinsuke Matsumura


Archive | 2011

Verbundnanoteilchen und Herstellungsverfahren dafür

Masami Nakamoto; Mari Yamamoto; Yukiyasu Kashiwagi; Yukio Yoshida; Hiroshi Kakiuchi; Shinsuke Matsumura


Archive | 2009

COMPOSITE NANOPARTICLES AND MANUFACTURING METHOD THEREOF

Masami Nakamoto; Mari Yamamoto; Yukiyasu Kashiwagi; Yukio Yoshida; Hiroshi Kakiuchi; Shinsuke Matsumura


Archive | 2009

Composite nanoparticle and process for producing same

Masami Nakamoto; 中許 昌美; Mari Yamamoto; 真理 山本; Yukiyasu Kashiwagi; 行康 柏木; Yukio Yoshida; 吉田 幸雄; Hiroshi Kakiuchi; 宏之 垣内; Shinsuke Matsumura; 慎亮 松村

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Yukio Yoshida

Jichi Medical University

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Mari Yamamoto

Nara Institute of Science and Technology

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Masanari Takahashi

Nara Institute of Science and Technology

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