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Dive into the research topics where Tomoyuki Shiratsuchi is active.

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Featured researches published by Tomoyuki Shiratsuchi.


Journal of The Electrochemical Society | 2006

Degradation Mechanism and Life Prediction of Lithium-Ion Batteries

Toshihiro Yoshida; Michio Takahashi; Satoshi Morikawa; Chikashi Ihara; Hiroyuki Katsukawa; Tomoyuki Shiratsuchi; Jun-ichi Yamaki

Lithium-ion cells with 5-Ah capacity were fabricated using a spinel Li 1.1 (Ni 0.025 Ti 0.025 Mg 0.02 )Mn 1.83 O 4 as a cathode active material, graphitized carbon as an anode active material, and 1 M LiPF 6 /ethylene carbonate + diethyl carbonate + dimethyl carbonate as an electrolyte. In order to improve the calendar life of the cell, we investigated the degradation mechanism by measuring the thickness of the solid electrolyte interphase (SEI) on anode active material. The SEI thickness was measured by focused ion beam, scanning electron microscope, and X-ray photoelectron spectroscopy. The thickness of the SEI was initially 0.04 μm, and after storage for 392 days at 25 and 40°C, the thickness was 0.15 and 0.45 μm, respectively. The capacity decreased with increase in the thickness of SEI, because Li in the cell is consumed by forming SEI. The amount of Li consumption was estimated theoretically assuming that SEI is formed by a reaction between intercalated Li and the electrolyte in SEI on the negative carbon surface, and a diffusion of the electrolyte in the SEI is the rate-determining step of the reaction. The theoretical equation showed a good agreement with experimental capacity fade at 25, 40, and 60°C for the storing days up to 380 days. A voltage decrease of the cell after 1-s at 20 A of discharge current was measured to estimate roughly the increase of the cell internal resistance during storage. The increase of SEI resistance was estimated by the theoretical equation and compared with the experimental voltage drop data after 1-s discharge. However, the theoretical data was not in a good agreement with the experimental data. The reason is that the charge-transfer resistance on the anode also increases during storage. Another reason is the resistance change of the cathode during the storage.


Electrochimica Acta | 2009

Cathodic performance of LiMn1−xMxPO4 (M = Ti, Mg and Zr) annealed in an inert atmosphere

Tomoyuki Shiratsuchi; Shigeto Okada; Takayuki Doi; Jun-ichi Yamaki


Archive | 2006

POSITIVE ELECTRODE ACTIVE MATERIAL AND METHOD OF PRODUCING THE SAME AND NONAQUEOUS ELECTROLYTE BATTERY HAVING POSITIVE ELECTRODE CONTAINING POSITIVE ELECTRODE ACTIVE MATERIAL

Shinji Iizuka; Osamu Omae; Kumiko Sueto; Takeshi Shimada; Shigeto Okada; Tomoko Iwanaga; Tomoyuki Shiratsuchi


Journal of Power Sources | 2006

FePO4 cathode properties for Li and Na secondary cells

Tomoyuki Shiratsuchi; Shigeto Okada; Jun-ichi Yamaki; Tetsuaki Nishida


Archive | 2006

Method for producing positive electrode active material and nonaqueous electrolyte battery using same

Shigeto Okada; Tomoyuki Shiratsuchi; Tomoko Iwanaga; Jun-Ichi Yamaki; Shinji Iizuka; Osamu Omae; Kumiko Sueto; Takeshi Shimada


Archive | 2007

Active material for sodium secondary battery, and method for producing the same

Takayuki Doi; Shigeto Okada; Tomoyuki Shiratsuchi; Jun-Ichi Yamaki; 貴之 土井; 準一 山木; 重人 岡田; 友透 白土


Archive | 2006

METHOD OF PRODUCING POSITIVE ELECTRODE ACTIVE MATERIAL AND NONAQUEOUS ELECTROLYTE BATTERY USING THE SAME

Shigeto Okada; Tomoyuki Shiratsuchi; Tomoko Iwanaga; Jun-ichi Yamaki; Shinji Iizuka; Osamu Omae; Kumiko Sueto; Takeshi Shimada


Journal of Power Sources | 2007

Cathode performance of olivine-type LiFePO4 synthesized by chemical lithiation

Tomoyuki Shiratsuchi; Shigeto Okada; Jun-ichi Yamaki; Shohei Yamashita; Tetsuaki Nishida


Archive | 2006

MANUFACTURING METHOD OF POSITIVE ACTIVE MATERIAL AND NONAQUEOUS ELECTROLYTE BATTERY USING IT

Shinji Iizuka; Shigeto Okada; Tomoyuki Shiratsuchi; Jun-Ichi Yamaki; 準一 山木; 重人 岡田; 友透 白土; 晋司 飯塚


Archive | 2012

Battery and battery pack, electronic apparatus, electric vehicle, power storage device and power system

Ichiro Yamada; 一郎 山田; Tomoyuki Shiratsuchi; 友透 白土; Toru Kotani; 徹 小谷

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