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Featured researches published by Junji Akimoto.


Physics and Chemistry of Minerals | 1987

Characterization of the amorphous state in metamict silicates and niobates by EXAFS and XANES analyses

Izumi Nakai; Junji Akimoto; Masayuki Imafuku; Ritsuro Miyawaki; Yoshinori Sugitani; Kichiro Koto

X-ray absorption spectroscopy using synchrotron radiation has been applied to the investigation of the coordination geometries around Y, Zr and Nb atoms in metamict zircon, gadolinite, fergusonite, euxenite and samarskite. EXAFS and XANES spectra of their crystalline counterparts and synthetic compounds including ZrO2, Y2O3, YNbTiO6, YNbO4, LiNbO3, and NiNb2O6 were also measured for comparison. Metamict zircon shows a significant decrease in its Zr-O bond distances accompanying an increase in distortion of the Zr-O coordination polyhedra as compared with crystalline zircon. On the contrary, the average Nb-O bond distances and the symmetry of the coordination polyhedra around the Nb atoms in metamict euxenite and samarskite resemble those in the crystalline euxenite. Compared with crystalline fergusonite, a decrease in the distortion of the Nb-O octahedra is observed in metamict fergusonite. The structures of the second nearest neighbors (the metal-metal interactions) are largely disrupted in the metamict specimens except for metamict zircon and samarskite with high trivalent iron concentration. Nb in metamict samarskite is in octahedral coordination by oxygen and is similar to that in euxenite.


Archive | 2008

New titanium oxide, its preparation method and lithium rechargeable battery using the same as active material

Junji Akimoto; Hiroshi Hayakawa; Yasushi Idemoto; Michihito Kijima; 康 井手本; 博 早川; 倫人 木嶋; 順二 秋本; 靖彦 高橋


Archive | 2008

New titanium oxide, process for producing the titanium oxide, and lithium rechargeable battery using the titanium oxide as active material

Junji Akimoto; Hiroshi Hayakawa; Yasushi Idemoto


Archive | 2008

Lithium ion conductive oxide, producing method of the same and solid electrolyte constituted by the oxide

Junji Akimoto; Junji Awaka; Michihito Kijima; 倫人 木嶋; 順二 秋本; 淳司 阿波加


Archive | 2011

LITHIUM MANGANESE-BASED COMPOUND OXIDE AND METHOD FOR PRODUCING THE SAME

Mitsuharu Tabuchi; 光春 田渕; Yoko Nabeshima; 洋子 鍋島; Tomonari Takeuchi; 友成 竹内; Kuniaki Tatsumi; 国昭 辰巳; Junji Akimoto; 順二 秋本; Junichi Imaizumi; 純一 今泉; Hideka Shibuya; 英香 渋谷


Archive | 2009

Titanium oxide and process for producing same

Junji Akimoto; 秋本 順二; Kunimitsu Kataoka; 邦光 片岡; Akemi Kawashima; 明美 河島; Hiroshi Hayakawa; 早川 博


Archive | 2008

Lithium manganese oxide powder particle and production method of the same, and lithium secondary battery using the same as positive active material

Junji Akimoto; Junji Awaka; Hiroshi Hayakawa; Michihito Kijima; 博 早川; 倫人 木嶋; 順二 秋本; 淳司 阿波加


Archive | 2008

Manganese oxide, electrode active material for battery, those producing methods and secondary battery using electrode active material for battery

Junji Akimoto; Akihiro Fukabori; Hiroshi Hayakawa; Michihito Kijima; 博 早川; 倫人 木嶋; 明博 深堀; 順二 秋本


Archive | 2010

Lithium-manganese compound oxide having cubic rock salt structure and process for producing the same

Junji Akimoto; Junichi Imaizumi; Yoko Nabeshima; Hideka Shibuya; Mitsuharu Tabuchi; Tomonari Takeuchi; Kuniaki Tatsumi; 純一 今泉; 英香 渋谷; 光春 田渕; 順二 秋本; 友成 竹内; 国昭 辰巳; 洋子 鍋島


ChemElectroChem | 2018

High Ionic Conductor Member of Garnet-Type Oxide Li6.5La3Zr1.5Ta0.5O12

Kunimitsu Kataoka; Junji Akimoto

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Junji Awaka

Muroran Institute of Technology

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Kunimitsu Kataoka

National Institute of Advanced Industrial Science and Technology

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邦光 片岡

National Institute of Advanced Industrial Science and Technology

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Kuniaki Tatsumi

National Institute of Advanced Industrial Science and Technology

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Mikito Mamiya

National Institute of Advanced Industrial Science and Technology

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Mitsuharu Tabuchi

National Institute of Advanced Industrial Science and Technology

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Tomonari Takeuchi

National Institute of Advanced Industrial Science and Technology

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