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Featured researches published by Tooru Fuse.


Journal of The Electrochemical Society | 2005

Cyclic Properties of Si-Cu/Carbon Nanocomposite Anodes for Li-Ion Secondary Batteries

Bong-Chull Kim; Hiroyuki Uono; Tomohiro Satou; Tooru Fuse; Tadashi Ishihara; Makoto Ue; Mamoru Senna

Si/carbon nanocomposites with different Si distribution were prepared to the anode of Li-ion batteries for better cyclic properties. Si particles were milled by a high-energy multi-ring-type mill to decrease the crystallite size to 15 nm. Nanocomposite particles with controlled inhomogeneous spatial Si distribution were obtained by co-grinding with Cu powder. Heterogeneity of the Si distribution exhibited better cyclability than those with homogeneous Si distribution prepared from well-dispersed Si nanoparticles. We attribute the better cyclability to two factors, reduction of mechanical stress developed by electrochemical volume change of Si and networking of Si particles for maintaining conductive paths in the electrode.


Journal of Materials Research | 2003

Fabrication of nano-sized Si powders with a narrow size distribution by two-step milling

Bong-Chull Kim; Hiroyuki Uono; Tooru Fuse; Tadashi Ishihara; Mamoru Senna

By the combination of two successive dry milling processes (i.e., by using a multiring mill and subsequently a pin-type disintegrator), downsizing of Si powders was achieved to 30 nm crystallites and their aggregated meanvolume diameter about 100 nm, with the top size less than 400 nm. Combination of the two dry milling processes proved to be effective to reduce the particle size and sharpen the size distribution of the aggregates without using any additives, tedious wet processes, or subsequent classification. Increase in the impurity due to milling was <0.1% for Fe and <0.4% for Zr, being well within a tolerable limit for most of the technological purposes.


Journal of The Electrochemical Society | 2006

Optimized Structure of Silicon/Carbon/Graphite Composites as an Anode Material for Li-Ion Batteries

Hiroyuki Uono; Bong-Chull Kim; Tooru Fuse; Makoto Ue; Jun-ichi Yamaki


Solid State Ionics | 2004

Li-ion battery anode properties of Si-carbon nanocomposites fabricated by high energy multiring-type mill

Bong-Chull Kim; Hiroyuki Uono; Tomohiro Sato; Tooru Fuse; Tadashi Ishihara; Mamoru Senna


Archive | 2005

Nonaqueous Electrolyte Secondary Battery and Negative Electrode Thereof

Yukihiro Miyamoto; Masao Miyake; Etsuko Miyake; Tooru Fuse; Tomohiro Satou; Youji Arita


Archive | 2012

Carbon material for non-aqueous secondary battery, anode using said carbon material, and non-aqueous secondary battery

Shunsuke Yamada; Tooru Fuse; Nobuyuki Ishiwatari


Archive | 2013

CARBON MATERIAL FOR NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, NEGATIVE ELECTRODE FOR NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, AND MANUFACTURING METHOD FOR CARBON MATERIAL FOR NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY

Shunsuke Yamada; Nobuyuki Ishiwatari; Akio Ueda; Tooru Fuse; Masakazu Yokomizo; Akihiro Katou


Archive | 2013

Composite graphite particles for non-aqueous secondary cell negative electrode, negative electrode for non-aqueous secondary cell, and non-aqueous secondary cell

Akio Ueda; Satoshi Akasaka; Nobuyuki Ishiwatari; Tooru Fuse; Takashi Kameda; Harumi Asami; Takahide Kimura; Shunsuke Yamada


Archive | 2016

CARBON MATERIAL FOR NEGATIVE ELECTRODE OF NON-AQUEOUS SECONDARY BATTERY, NEGATIVE ELECTRODE FOR NON-AQUEOUS SECONDARY BATTERY, AND NON-AQUEOUS SECONDARY BATTERY

Daigo Nagayama; Tooru Fuse; Hisako Kondo


Archive | 2017

CARBON MATERIAL, METHOD FOR PRODUCING CARBON MATERIAL, AND NON-AQUEOUS SECONDARY BATTERY USING CARBON MATERIAL

Shunsuke Yamada; Nobuyuki Ishiwatari; Satoshi Akasaka; Daigo Nagayama; Shingo Morokuma; Koichi Nishio; Iwao Soga; Hideaki Tanaka; Takashi Kameda; Tooru Fuse; Hiromitsu Ikeda

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Nobuyuki Ishiwatari

Mitsubishi Chemical Corporation

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Shunsuke Yamada

Mitsubishi Chemical Corporation

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Akio Ueda

National Institute of Advanced Industrial Science and Technology

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Masakazu Yokomizo

Mitsubishi Chemical Corporation

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Satoshi Akasaka

Mitsubishi Chemical Corporation

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Takashi Kameda

Mitsubishi Chemical Corporation

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Bong-Chull Kim

Mitsubishi Chemical Corporation

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Harumi Asami

Mitsubishi Chemical Corporation

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Hiroyuki Uono

Mitsubishi Chemical Corporation

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Takahide Kimura

Mitsubishi Chemical Corporation

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