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中山将伸 研究業績一覧 (48件)
- 2024
- 2023
- 2022
- 2021
- 2020
- 全件表示
論文
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Masanobu NAKAYAMA,
Takashi OKAJIMA,
Yoshihiro YAMAMOTO,
Shinji BABA,
Kaede IIZUKA,
Masayuki NOGAMI,
Dai MOCHIZUKI,
Takanori KIGUCHI,
Shigeki KUROKI.
Fabrication and Electrochemical Performance of Lithium Polymer Battery Using Mesoporous Silica/Polymer Hybrid Electrolyte.,
J. CERAM. SOC. JPN.,
The Ceramic Society of Japan,
Vol. 121,
Num. 1416,
pp. 723-729,
Aug. 2013.
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Z. Bakeno,
M. Nakayama,
M. Wakihara,
I. Taniguchi.
Lithium AlPO4 composite polymer battery with nanostructured LiMn2O4 cathode,
J. Solid State Electrochem.,
Vol. 12,
pp. 295,
Mar. 2008.
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S. Matsuno,
M. Nakayama,
M. Wakihara,
J. Shirakawa.
First Principles study on phase stability in LixCuSb with Heusler type structure,
J. Electrochem. Soc.,
Vol. accepted,
Mar. 2008.
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Y. Kobayashi,
Y. Mita,
S. Seki,
Y. Ohno,
H. Miyashiro,
M. Nakayama,
M. Wakihara.
Configurational Entropy of Lithium Manganese Oxide and Related Materials, LiCryMn2-yO4 (y=0, 0.3),
J. Electrochem. Soc.,
Vol. 155,
pp. A14,
Jan. 2008.
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S. Matsuno,
M. Noji,
Y. Kobayashi,
H. Miyashiro,
M. Nakayama,
M. Wakihara.
Dynamics of Phase Transition in Li-Cu-Sb Anode Material for Rechargeable Lithium Ion Battery,
J. Electrochem. Soc.,
Vol. 155,
pp. A151,
Jan. 2008.
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S. Matsuno,
M. Nakayama,
M. Wakihara.
Novel Anode Material of CoMnSb for Rechargeable Li-ion battery,
J. Electrochem. Soc.,
Vol. 155,
pp. A61,
Jan. 2008.
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Fuminari Kaneko,
Yuki Masuda,
Masanobu NAKAYAMA,
Masataka Wakihara.
Electrochemical Performances of Lithium Ion Battery Using Alkoxides of Group 13 as Electrolyute Solvent,
Electrochimica Acta,
Vol. 53,
pp. 549,
Oct. 2007.
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Y. Masuda,
M. Nakayama,
M. Wakihara.
Fabrication of All Solid-State Lithium Polymer Secondary Batteries Using PEG-borate/aluminate ester as Plasticizer for Polymer Electrolyte,
Solid State Ionics,
Vol. 178,
pp. 981-986,
2007.
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J. Shirakawa,
M. Nakayama,
M. Wakihara,
Y. Uchimoto.
Changes in Electronic Structure upon Lithium Insertion into Fe2(SO4)3 and Fe2(MoO4)3 Investigated by X-ray Absorption Spectroscopy,
J. Phys. Chem. B,
Vol. 111,
pp. 1424-1430,
2007.
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Z. Bakenov,
M. Nakayama,
M. Wakihara.
A Nonflammable Lithium Polymer Battery with High Performance for Elevated Temperature Applications,
Electrochem. Solid-State Lett.,
Vol. 10,
pp. A208,
2007.
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S. Matsuno,
M. Noji,
T. Kashiwagi,
M. Nakayama,
M. Wakihara.
Construction of the Ternary Phase Diagram in Li-Cu-Sb system as anode material for lithium ion battery,
J. Phys. Chem. C,
Vol. 111,
pp. 7548-7553,
2007.
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W. Cho,
W. Ra,
J. Shirakawa,
M. Nakayama,
M. Wakihara.
Synthesis and electrochemical properties of nonstoichiometric LiAlxMn2-xO4-<delta> as cathode materials for rechargeable lithium ion battery,
J. Solid State Chem.,
Vol. 179,
pp. 3534,
2006.
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M. Nakayama,
J. Shirakawa,
M. Wakihara.
Ab initio Density Functional Study on Changes in Local Structure in Perovskite Compund, LixLa1/3NbO3,
Solid State Ionics,
Vol. 177,
pp. 1259,
2006.
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M. Nakayama,
K. Miwa,
H. Ikuta,
H. Hinode,
M. Wakihara.
Electronic Structure of Intercalation Compounds of CoxNbS2,
Chem. Mater.,
Vol. 18,
pp. 4996,
2006.
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M. Kaneko,
M. Nakayama,
M. Wakihara.
Lithium-ion conduction in elastomeric binder in Li-ion batteries,
J. Solid State Electrochem.,
Vol. 11,
pp. 1071-1076,
2006.
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Y. Masuda,
M. Seki,
M. Nakayama,
M. Wakihara,
H. Mita.
Study on Ionic Conductivity of Polymer Electrolyte Plasticized with PEG-Aluminate Ester for Rechargeable Lithium Ion Battery,
Solid State Ionics,
Vol. 177,
pp. 843-846,
2006.
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W. Ra,
M. Nakayama,
W. Cho,
M. Wakihara,
Y. Uchimoto.
Electronic and local structural changes in Li2+xTi3O7 ramsdellite compounds upon electrochemical Li-ion insertion reactions by X-ray absorption spectroscopy,
Phys. Chem. Chem. Phys,
Vol. 8,
pp. 882-889,
2006.
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J. Shirakawa,
M. Nakayama,
Y. Uchimoto,
M. Wakihara.
Multiple Scattering Calculation for Co K-edge XANES Spectra of Nanometer Scale Metal Deposited during Li Insertion into LiCoVO4,
Electrochem.Solid State Lett.,,
Vol. 9,
pp. A200,
2006.
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Ra,
W.; Nakayama,
M.;Uchimoto,
Y.; Wakihara, M..
Experimental and Computational Study of the Electronic Structural Changes in LiTi2O4 Spinel Compounds upon Electrochemical Li Insertion Reactions,
J. Phys. Chem. B,
Vol. 109,
pp. 1130,
2005.
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MASANOBU NAKAYAMA.
Changes in Electronic Structure upon Lithium Insertion into the A-Site Deficient Perovskite Type Oxides (Li,La)TiO3,
J. Phys. Chem. B,
Vol. 109,
pp. 4135,
2005.
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M. Nakayama,
Y. Uchimoto,
M. Wakihara.
Investigation on cycleability in LixLa1/3NbO3 electrode material for rechargeable lithium ion battery,
Journal of Power Sources,
Vol. 146,
pp. 674-677,
2005.
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H. Miyashiro,
Y. Kobayashi,
S. Seki,
Y. Mita,
A. Usami,
M. Nakayama,
M. Wakihara.
Fabrication of All-Solid-State Lithium Polymer Secondary Batteries Using Al2O3-Coated LiCoO2,
Chemistry of Materials,
Vol. 17,
pp. 5603-5605,
2005.
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MASANOBU NAKAYAMA.
X-ray absorption spectroscopy study on electronic structure of Li-excess spinel Li1+xTi2-xO4 (0<x<0.33),
Applied Physics Letter,
Vol. 84,
pp. 4364,
2004.
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MASANOBU NAKAYAMA.
Changes in Electronic Structure between Cobalt and Oxide Ions of Lithium Cobalt Phosphate as 4.8 V Positive Elecrode Material,
Chemistry of Materials,
Vol. 16,
pp. 3399,
2004.
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MASANOBU NAKAYAMA.
Molecular Dynamics Simulations of LiCoyMn2-yO4 Cathode Materials for Rechargeable Li Ion Batteries,
Journal of Physical Chemistry B,
Vol. 108,
pp. 3754,
2004.
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MASANOBU NAKAYAMA.
Changes in electronic structure upon lithium insertion reaction into the A-site deficient Perovskite type oxides, Gd1/3TaO3: Part2. ab initio calculations,
Solid State Ionics,
Vol. 172,
pp. 77,
2004.
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MASANOBU NAKAYAMA.
Changes in electronic structure upon lithium insertion reaction into the A-site deficient Perovskite type oxides, Gd1/3TaO3: Part1. XAS measurements,
Solid State Ionics,
Vol. 172,
pp. 73,
2004.
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MASANOBU NAKAYAMA.
Lithium Insertion/Removal Mechanism of LiCoVO4 Lithium Ion Cells,
Electrochemistry Solid Stete Letter,
Vol. 7,
pp. A27,
2004.
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M. Nakayama,
M. Kaneko,
S. Matsuno,
H. Ikuta,
Y. Uchimoto,
M. Wakihara.
Molecular Dynamics Simulations of LiCryMn2-yO4 with Spinel Structure,
Electrochemical Society Proceedings,
Vol. 2003-20,
pp. 255-260,
2004.
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MASANOBU NAKAYAMA.
Study on the AC Impedance Spectroscopy for the Li Insertion Reaction of LixLa1/3NbO3 at the Electrode-Electrolyte Interface,
Journal of Physical Chemistry B,
Vol. 107,
pp. 10603,
2003.
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MASANOBU NAKAYAMA.
Using X-ray Absorption Spectroscopy to Measure Changes of Electronic Structure Accompanying Lithium Insertion into the Perovskite Type Oxides,
Chemistry of Materials,
Vol. 15,
pp. 1728,
2003.
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MASANOBU NAKAYAMA.
Local Structural Studies of LiCryMn2-yO4 Cathode Materials for Li-Ion Batteries,
Journal of Physical Chemistry B,
Vol. 107,
pp. 1727,
2003.
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MASANOBU NAKAYAMA.
Changes in Local Structure during Electrochemical Li Insertion into A-Site Deficient Perovskite Oxides, La1/3NbO3,
Journal of Physical Chemistry B,
Vol. 107,
pp. 10715,
2003.
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MASANOBU NAKAYAMA.
O K-edge X-ray absorption spectroscopic studies of LixLa1/3NbO3 using ab initio multiple scattering calculation,
Electrochemistry,
Vol. 71,
pp. 1025,
2003.
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MASANOBU NAKAYAMA.
Grain size control of LiMn2O4 cathode material using microwave synthesis method,
Solid State Ionics,
Vol. 164,
pp. 35,
2003.
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MASANOBU NAKAYAMA.
Relationship between the Li ionic conduction and the local structures in B-site substituted Perovskite compounds (Li0.1La0.3)1+xMxNb1-xO3 (M = Zr, Ti; x = 0, 0.05),
Applied Physics Letters,
Vol. 81,
pp. 2977,
2002.
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MASANOBU NAKAYAMA.
Electrochemical Lithium Insertion for Perovskite Oxides of LiyLa(1-y)/3NbO3 (y=0, 0.1, 0.25),
Journal of Physical Chemistry B,
Vol. 106,
pp. 6437,
2002.
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MASANOBU NAKAYAMA.
Ionic conduction of lithium in B-site substituted perovskite compounds, (Li0.1La0.3)yMxNb1-xO3 (M = Zr, Ti, Ta),
Journal of Materials Chemistry,
Vol. 12,
pp. 1500,
2002.
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MASANOBU NAKAYAMA.
Mixed conduction for the spinel type (1-x)Li4/3Ti5/3O4-xLiCrTiO4 system,
Solid State Ionics,
Vol. 117,
pp. 265,
1999.
国内会議発表 (査読なし・不明)
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滝博之,
柏木倫明,
中山将伸,
脇原將孝.
反応エントロピー測定によるMg置換LiMn2O4スピネル系材料の相安定性の検討,
熱測定討論会,
Oct. 2007.
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和田慎太,
中山将伸,
脇原將孝,
黒木重樹.
アルミン酸エステル添加ポリマーを用いたリチウムポリマー電池の特性,
熱測定討論会,
Oct. 2007.
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金子史育,
和田慎太,
中山将伸,
脇原將孝,
黒木重樹.
13族アルコキシドを用いた固体電解質の物性とリチウムポリマー電池の充放電挙動,
電池討論会,
Oct. 2007.
その他の論文・著書など
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中山将伸.
リチウムイオン電池では、なぜ非水系液体中でイオンができるのか?-非水系電解質を用いたリチウムイオン電池の現状と展望-,
化学と教育,
Vol. 54,
No. 3,
pp. 154,
Apr. 2006.
-
中山将伸,
脇原將孝.
高リチウムイオン導電性材料の設計,
熱測定,
Vol. 32,
pp. 186-194,
2005.
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Masanobu NAKAYAMA,
Yoshiharu UCHIMOTO,
Masataka WAKIHARA.
Electrochemical lithium insertion into perovskite structure; Good example of crystal and electronic structural study for Li ion battery,
Recent Research Developments in Solid State Ionics,Transworld Research Network,
Vol. 322,
pp. 367,
2005.
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中山将伸,
内本喜晴,
脇原將孝.
リチウムイオン電池 -電極材料での電子移動反応-,
表面,
Vol. 4,
pp. 130,
Apr. 2003.
特許など
学位論文
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