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Dive into the research topics where Seitaro Ito is active.

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Featured researches published by Seitaro Ito.


Frontiers in Energy Research | 2016

The Electrochemical Characteristics and Applicability of an Amorphous Sulfide-Based Solid Ion Conductor for the Next-Generation Solid-State Lithium Secondary Batteries

Yuichi Aihara; Seitaro Ito; Ryo Omoda; Takanobu Yamada; Satoshi Fujiki; Taku Watanabe; Youngsin Park; Seok-Gwang Doo

Sulfide based solid electrolytes are of considerable practical interest for all solid-state batteries due to their high ionic conductivity and softness at room temperature. In particular, iodine containing lithium thiophosphate is known to exhibit high ionic conductivity but its applicability in solid-state battery remains to be examined. To demonstrate the possibility of the iodine doped solid electrolyte (SE), LiI-Li3PS4 was used to construct two different types of test cells were prepared, Li/SE/S and Li/SE/LiNi0.80Co0.15Al0.05 cells. The solid electrolyte, LiI-Li3PS4 showed a high ionic conductivity approximately 1.2 mScm-1 at 25 ℃. Within 100 cycles, the capacity retention was better in Li/SE/S cell, and the red-ox shuttle was not observed due to physical blockage of SE layer. The capacity fade was approximately 4% from the maximum capacity observed at 10th cycle, after 100 cycles in Li/SE/S cell. On the contrary, the capacity fade was much larger in Li/SE/LiNi0.80Co0.15Al0.05 cell, probably due to the decomposition of the electrolyte at the operating potential range. Nevertheless, both the Li/SE/LiNi0.80Co0.15Al0.05 and Li/SE/S cells exhibited the high coulombic efficiencies above 99.6% and 99.9% during charge-discharge cycle test, respectively. This fact indicates that a high energy density can be possible without an excess lithium metal anode. In addition, it was particularly interesting that the SE showed a reversible capacity about 260 mAhg-1-SE. This electrolyte may have not only as a role of the ion conduction, but also as a catholite.


Journal of Power Sources | 2014

A rocking chair type all-solid-state lithium ion battery adopting Li2O–ZrO2 coated LiNi0.8Co0.15Al0.05O2 and a sulfide based electrolyte

Seitaro Ito; Satoshi Fujiki; Takanobu Yamada; Yuichi Aihara; Youngsin Park; Tae Young Kim; Seung-Wook Baek; Jae-myung Lee; Seok-Gwang Doo; Nobuya Machida


Journal of The Electrochemical Society | 2015

All Solid-State Lithium–Sulfur Battery Using a Glass-Type P2S5–Li2S Electrolyte: Benefits on Anode Kinetics

Takanobu Yamada; Seitaro Ito; Ryo Omoda; Taku Watanabe; Yuichi Aihara; Marco Agostini; Ulderico Ulissi; Jusef Hassoun; Bruno Scrosati


Journal of Power Sources | 2014

A synthesis of crystalline Li7P3S11 solid electrolyte from 1,2-dimethoxyethane solvent

Seitaro Ito; Moeka Nakakita; Yuichi Aihara; Takahiro Uehara; Nobuya Machida


Journal of Power Sources | 2012

Application of quasi-solid-state silica nanoparticles–ionic liquid composite electrolytes to all-solid-state lithium secondary battery

Seitaro Ito; Atsushi Unemoto; Hideyuki Ogawa; Takaaki Tomai; Itaru Honma


Solid State Ionics | 2014

Preparation and electrochemical properties of LiAlO2-coated Li(Ni1/3Mn1/3Co1/3)O2 for all-solid-state batteries

Kazuya Okada; Nobuya Machida; Muneyuki Naito; Toshihiko Shigematsu; Seitaro Ito; Satoshi Fujiki; Masatugu Nakano; Yuichi Aihara


Journal of The Electrochemical Society | 2013

Electrical Conductivity, Self-Diffusivity and Electrolyte Performance of a Quasi-Solid-State Pseudo-Ternary System, Bis(trifluoromethanesulfonyl)amide-Based Room Temperature Ionic Liquid–Lithium Bis(trifluoromethanesulfonyl)amide–Fumed Silica Nanoparticles

Atsushi Unemoto; Hideyuki Ogawa; Seitaro Ito; Itaru Honma


Journal of Power Sources | 2016

The effect of diamond-like carbon coating on LiNi0.8Co0.15Al0.05O2 particles for all solid-state lithium-ion batteries based on Li2S–P2S5 glass-ceramics

Heidy Visbal; Yuichi Aihara; Seitaro Ito; Taku Watanabe; Youngsin Park; Seok-Gwang Doo


Solid State Ionics | 2011

Electrical conductivity and dynamics of quasi-solidified lithium-ion conducting ionic liquid at oxide particle surfaces

Atsushi Unemoto; Yoshiki Iwai; Satoshi Mitani; Seung-Wook Baek; Seitaro Ito; Takaaki Tomai; Junichi Kawamura; Itaru Honma


Energy technology | 2015

A Lithium-Ion Battery based on an Ionic Liquid Electrolyte, Tin-Carbon Nanostructured Anode, and Li2O-ZrO2-Coated Li[Ni0.8Co0.15Al0.05]O2 Cathode

Marco Agostini; Ulderico Ulissi; Daniele Di Lecce; Yuichi Ahiara; Seitaro Ito; Jusef Hassoun

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Ulderico Ulissi

Karlsruhe Institute of Technology

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