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2023年 |
- A. Kitajou, S. Hiroi, K. Ohara, K. Ikeda, T. Nanami, S. Muto
Cathode properties of xLiF-LiCrO2 composites (x = 0-1.5) prepared by dry
ball-milling method for lithium ion batteries
J. Phys. Chem. C, 127(6), 2866 (2023).
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2022年 |
- I. Khan, B. Zhang, K. Matsuda, P. A. Bingham, A. Kitajou, A. Inoishi, S. Okada, S. Yoshioka, T. Nishida, Z. Homonnay, E. Kuzmann, S. Kubuki
Development of electrically conductive ZrO2-CaO-Fe2O3-V2O5 glass and glass-ceramics as a new cathode active material for Na-ion batteries with high performance
J. Alloys Compd., 899, 163309 (2022).
- A. Kitajou, H. Yamagishi, M. Katayama, K. Yoshii, M. Shikano, H. Sakaebe, S. Okada
Elucidation of discharge‒charge reaction mechanism of FeF2 cathode aimed at efficient use of conversion reaction for lithium-ion batteries
J. Electroanal. Chem., 920, 116577 (2022).
- A. Kitajou, M. Yamashita, W. Kobayashi, M. Okada, T. Nanami, S. Muto
Anode Properties of NaTi2(PO4)3 Prepared by Adding Excess Na2CO3 for Aqueous Sodium-Ion Batteries
ACS Appl. Energy Mater., 5, 9587 (2022).
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2021年 |
- A. Kitajou, M. Hokazono, N. Taguchi, S. Tanaka, S. Okada
Cathode properties of FeF3–V2O5Glass/C for lithium-ion batteries
J. Alloys Compd., 856, 157449 (2021).
- S. Kubuki, K. Osouda, A. S. Ali, I. Khan, B. Zhang, A. Kitajou, S. Okada, J. Okabayashi, Z. Homonnay, E. Kuzmann, T. Nishida, L. Pavić, A. Šantić, A. Moguš-Milanković
57Fe-Mössbauer and XAFS Studies of Conductive Sodium Phospho-Vanadate Glass as a Cathode Active Material for Na-ion Batteries with Large Capacity
J. Non Cryst. Solids, 570, 120998 (2021).
- B. Xie, R. Sakamoto, A. Kitajou, L. Zhao, K. Nakamoto, S. Okada, K. Albrecht, W. Kobayashi, M. Okada, T. Takahara
Enhanced electrochemical performance of Li2.72Na0.31MnPO4CO3 as a cathode material in “water-in-salt” electrolytes
Chem. Commun., 57, 12840 (2021).
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2020年 |
- B. Xie, R. Sakamoto, A. Kitajou, K. Nakamoto, L. Zhao, S. Okada, Y. Fujita, N. Oka, T. Nishida, W. Kobayashi, M. Okada, T. Takahara
Cathode Properties of Na3FePO4CO3 Prepared by the Mechanical Ball Milling Method for Na-ion Batteries
Scientific Reports, 10(1), 3278 (2020).
- M. Hamaguchi, H. Momida, A. Kitajou, S. Okada, T. Oguchi
Suppression of O-redox reactions by multivalent Cr in Li-excess Li2.4M0.8M0.8′O4 (M, M’ = Cr, Mn, and Ti) cathodes with layered and cation-disordered rock-salt structures
Electrochemica Acta, 354(10), 136630 (2020).
- R. Sakamoto, M. Yamashita, K. Nakamoto, Y. Zhou, N. Yoshimoto, K. Fujii, T. Yamaguchi, A. Kitajou, and S. Okada
Local structure of a highly concentrated NaClO,4 aqueous solution-type electrolyte for sodium ion batteries
PhysChemChemPhys, 22, 26452 (2020).
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2019年 |
- A. Kitajou, K. Eguchi, Y. Ishado, H. Setoyama, T. Okajima, S. Okada
Electrochemical properties of titanium fluoride with high rate capability for lithium-ion batteries
J. Power Source, 419, 1 (2019).
- 小鷹浩毅、籾田浩義、喜多條鮎子、岡田重人、小口多美夫
「第一原理計算を用いた硫化スズ電極のNaイオン電池性能評価と放電機構解明」
J. Comput. Chem. Jpn., 18, 78 (2019).
- A. Nishio, A. Inoishi, A. Kitajou, S. Okada
Effect of Li3BO3 addition to NASICON-type single-phase all-solid-state lithium battery
based on
Li1.5Cr0.5Ti1.5(PO4)3
J. Ceram. Soc. Japan., 127(1), 18 (2019).
- A. Kitajou, R. Kawaguchi, T. Yamaguchi, K. Fujii, M. Morita, N. Yoshimoto
Electrochemical Properties of Silicon/C Composite with Porous Carbon Designed Using a-Cyclodextrin and Surfactant
Electrochemistry, 87(4), 229 (2019).
- H. Kotaka, H. Momida, A. Kitajou, S. Okada, T. Oguchi
First-Principles Study of Na-Ion Battery Performance and Reaction Mechanism of Tin Sulfide as Negative Electrode
Chemical Record, 19, 811 (2019).
- A. Kitajou, H. Momida, T. Yamashita, T. Oguchi, S. Okada
Amorphous xNaF-FeSO4Systems (1 ≤ x ≤ 2) with Excellent Cathode Properties for Sodium-Ion Batteries
ACS Appl. Energy Mater., 2, 5968 (2019).
- H. Momida, A. Kitajou, S. Okada, T. Oguchi
First-Principles Study of X-Ray Absorption Spectra in NaFeSO4F for Exploring Na-Ion Battery Reactions
J. Phys. Soc. Jpn., 88, 124709 (2019).
- B. Xie, R. Sakamoto, A. Kitajou, K. Nakamoto, L. Zhao, S. Okada, W. Kobayashi, M. Okada, T. Takahara
Cathode Properties of Na3MnPO4CO3 Prepared by the Mechanical Ball Milling Method for Na-ion Batteries
Energy, 12(23), 4534 (2019).
- T. Tsubota, A. Kitajou, and S. Okada
O3-type Na(Fe1/3Mn1/3Co1/3O2 as a cathode material with high rate and good charge-discharge cycle performance for sodium-ion batteries
Evergreen, 6(4), 275 (2019).
- B. Xie, A. Kitajou, S. Okada, W. Kobayashi, M. Okada, and T. Takahara
Cathode properties of Na3MPO4CO3 (M = Co/Ni) prepared by a hydrothermal method for Na-ion batteries
Evergreen, 6(4), 262 (2019).
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2018年 |
- A. Kitajou, L. Zhao, R. Nagano, A. Inoishi, E. Kobayashi, S. Okada
Electrochemical Performance and Thermal Stability of Iron Oxyfluoride (FeOF) for Sodium-Ion Batteries
Batteries, 4, 68 (2018).
- N. Tanibata, Y. Kondo, S. Yamada, M. Maeda, H. Takeda, M. Nakayama, T.
Asaka, A. Kitajou, S. Okada
Nanotube-structured Na2V3O7 as a Cathode Material for Sodium-Ion Batteries with High-rate and Stable
Cycle Performances
Scientific Reports, 8(1), 17199 (2018).
- A. Kitajou, Y. Ishado, A. Inoishi, S. Okada
Amorphous xLiF-FeSO4 (1 ≤ x ≤ 2) composites as a cathode material for lithium ion batteries
Solid State Ionics, 326, 48 (2018).
- A. Inoishi, A. Nishio, A. Kitajou, S. Okada,
Single-phase All-solid-state Silver Battery using Ag1.5Cr0.5Ti1.5(PO4)3 as Anode, Cathode, and Electrolyte
Chemistry Select, 3(34), 9965 (2018).
- J. Zhang, B. Su, A. Kitajou, M. Fujita, Y. Cui, M. Oda, W. Zhou, P. H.-L.
Sit, D. Y.W. Yu
Activating abnormal capacity in stoichiometric NaVO3 as cathode materialfor sodium-ion battery
J. Power Sources, 400, 377 (2018).
- A. Inoishi, A. Nishio, Y. Yoshioka, A. Kitajou, S. Okada
A single-phase all-solid-state lithium battery based on Li1.5Cr0.5Ti1.5(PO4)3for high rate capability and low temperature operation
Chem. Commun., 54, 3178 (2018).
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2017年 |
- L. Zhao, A. Kitajou, S. Okada
Thermal Characteristics of Conversion-Type FeOF Cathode in Li-ion Batteries
Batteries, 3(4), 33 (2017).
- A. Inoishi, Y. Yoshioka, L. Zhao, A. Kitajou, S. Okada
Improvement in the Energy Density of Na3V2(PO4)3 by Mg Substitution
ChemElectroChem, 4, 2755 (2017).
- A. Kitajou, Y. Ishado, T. Yamashita, H. Momida, T. Oguchi, S. Okada
Cathode Properties of Perovskite-type NaMF3 (M = Fe, Mn, and Co) Prepared by Mechanical Ball Milling for Sodium-ion
Battery
Electrochemica Acta, 245, 424 (2017).
- A. Kitajou, I. Tanaka, Y. Tanaka, E. Kobayashi. H. Setoyama, T. Okajima,
S. Okada
Discharge and Charge Reaction of Perovskite-type MF3 (M = Fe and Ti) Cathodes for Lithium-ion Battery
Electrochemistry, 85 (8), 427 (2017).
- A. Kitajou, S. Kudo, J. Hayashi, S. Okada
Synthesis and electrochemical properties of Fe3C-carbon composite as an anode material for lithium-ion batteries
Electrochemistry, 85 (10), 630 (2017).
- K. Nakamoto, R. Sakamoto, A. Kitajou, M. Ito, S. Okada
Effect of Concentrated Electrolyte on Aqueous Sodium-ion Battery with Sodium Manganese Hexacyanoferrate Cathode
Electrochemistry, 85(4), 179 (2017).
- K. Nakamoto, R. Sakamoto, A. Kitajou, M. Ito, S. Okada
Cathode Properties of Sodium Manganese Hexacyanoferrate in Aqueous Electrolyte
Evergreen, 4, 6 (2017).
- K. Chihara, M. Ito, A. Kitajou, S. Okada
Cathode Property of Na2CxOx [x = 4, 5, and 6] and K2C6O6 for Sodium-ion Batteries
Evergreen, 4, 1 (2017).
- A. Inoishi, T. Omuta, E. Kobayashi, A. Kitajou, S. Okada
Single-Phase All-Solid-State Lithium-Ion Battery Using Li3V2(PO4)3 as the Cathode, Anode, and Electrolyte
ChemistrySelect, 2, 7925 (2017).
- A. Inoishi, T. Omuta, E. Kobayashi, A. Kitajou, S. Okada
A Single-Phase, All-Solid-State Sodium Battery Using Na3-xV2-xZrx(PO4)3 as the Cathode, Anode, and Electrolyte
Adv. Mater. Interfaces, 4(5), 1600942 (2017).
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2016年 |
- A. Kitajou, J. Yoshida, S. Nakanishi, Y. Matsuda, R. Kanno, T. Okajima,
S. Okada
Capacity improvement by deficit of transition metals in inverse spinel
LiNi1/3Co1/3Mn1/3VO4 cathodes
J. Power Sources, 302, 204-246 (2016).
- A. Kitajou, K. Tanaka, H. Miki, H. Koga, T. Okajima, S. Okada
Improvement of Cathode Properties by Lithium Excess in Disordered Rocksalt
Li2+2xMn1-xTi1-xO4
Electrochemistry, 84 (8), 597-600 (2016).
- K. Nakamoto, Y. Kano, A. Kitajou, S. Okada
Electrolyte Dependence of Na2FeP2O7//NaTi2(PO4)3 Rechargeable Aqueous Sodium-ion Batteries
J. Power Sources, 327, 327 (2016).
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2015年以前 |
- Y. Kee, N. Dimov, E. Kobayashi, A. Kitajou, S. Okada,
Structural and electrochemical properties of Fe- and Al-doped Li3V2(PO4)3 for all-solid-state symmetric lithium ion batteries prepared by spray-drying-assisted
carbothermal method
Solid State Ionics, 272, 138-143 (2015).
- A. Kitajou, E. Kobayashi, S. Okada
Electrochemical Performance of a Novel Cathode material “LiFeOF” for Li-ion Batteries
Electrochemistry, 83 (10), 885-888 (2015).
- H. Momida, A. Kitajou, S. Okada, T. Yamashita, T. Oguchi
Discharge Reaction Mechanism in Na/FeS2 Batteries: First-Principles Calculations
J. Phys. Soc. Jpn., 84(12), 124709 (2015).
- A. Kitajou, J. Yamaguchi, S. Hara, S. Okada
Reaction Mechanism of a Pyrite-Type FeS2 Cathode during Discharge and Charge Process for Sodium Secondary Batteries
J. Power Sources, 247, 391-395 (2014).
- S. Kubuki, H. Masuda, K. Matsuda, K. Akiyama, P. Zsabka, Z. Homonnay, E.
Kuzmann, A. Kitajo, S. Okada and T. Nishida
Mössbauer Study of New Vanadate Glass with Large Charge-Discharge Capacity.
Hyperfine Interact, 226, 765-770 (2014).
- Y. Ohata, J. Yun, R. Miyamae, T. Kim, J. Kim, M.-H. Seo, A. Kitajo, J. Miyawaki, S. Okada, S.-H. Yoon
TiO2-entrained tubular carbon nanofiber and its electrochemical properties
in the rechargeable Na-ion battery system
Appl. Therm. Eng., 72, 309-314 (2014).
- K. Chihara, A. Kitajou, I. D. Gocheva, S. Okada and J. Yamaki
Cathode properties of Na3M2(PO4)2F3 [M = Ti, Fe, V] for sodium-ion batteries
J. Power Sources, 227, 80-85 (2013).
- K. Chihara, N. Chujo, A. Kitajou, S. Okada
Cathode Properties of Na2C6O6 for Sodium-Ion Batteries
Electrochimica Acta, 110, 240 (2013).
- Y. Kawano, A. Kitajou, S. Okada
Synthesis and Cathode Properties of a Cubic Rocksalt-type Si-doped Li2NiTiO4 for Lithium-ion Batteries
J. Power Sources, 242, 768-774 (2013).
- A. Kitajou, J. Yoshida, S. Nakanishi, S. Okada and J. Yamaki
Cathode properties of Mn-doped inverse spinels for Li-ion battery
J. Power Sources, 244, 658-662 (2013).
- E. Kobayashi, A. Kitajou, S. Okada and J. Yamaki
Improvement of solid-state symmetric cell performance with lithium vanadium phosphate
J. Power Sources, 244, 312-317 (2013).
- N. Dimov, A. Nishimura, K. Chihara, A. Kitajou, I. D. Gocheva, S. Okada
Transition metal NaMF3 compounds as model systems for studying the feasibility of ternary Li-M-F and Na-M-F single phases as cathodes for lithium–ion and sodium–ion batteries
Electrochimica Acta, 110, 214 (2013).
- A. Kitajou, H. Komatsu, R. Nagano, S. Okada
Synthesis of FeOF Using Roll-Quenching Method and the Cathode Properties for Lithium-ion battery
J. Power Sources, 243, 494-498 (2013).
- M. Zhou, L. Zhao, A. Kitajou, S. Okada and J. Yamaki
Mechanism on exothermic heat of FeF3 cathode in Li-ion batteries
J. Power Sources, 203, 103-108 (2012).
- A. Kitajou, H. Komatsu, K. Chihara, I. D. Gocheva, S. Okada and J. Yamaki
Novel synthesis and electrochemical properties of perovskite-type NaFeF3 for a sodium-ion battery
J. Power Sources, 198, 389-392 (2011).
- K. Yoshida, A. Kitajo and T. Yamaguchi
17O NMR Relaxation Study of Dynamics of Water Molecules in Aqueous Mixtures
of Methanol, Ethanol, and 1-Propanol over a Temperature Range of 283-403
K
J. Mol. Liquids, 125, 158-163 (2006).
- K. Yoshizuka, A. Kitajou and M. Holba
Selective Recovery of Lithium from Seawater Using a Novel MnO2 Type Adsorbent III- Benchmark Evaluation
Ars Separatoria Acta, 4, 78-85 (2006).
- 喜多條鮎子, 鈴鹿泰宏, 鈴木 拓, 西浜章平, 吉塚和治
「海水からの実用的なリチウム回収を目的としたλ-MnO2系吸着剤の開発」
イオン交換学会誌, 17, 7-13 (2006).
- M. Holba, A. Kitajou and K. Yoshizuka
Seawater Immense Source of Lithium
CHEMagazin, 15, 29-31 (2005).
- 喜多條鮎子, Marek Holba, 鈴木 拓, 西浜章平, 吉塚和治
「新規なλ-MnO2吸着剤を用いた海水からの高選択的リチウム回収プロセス」
イオン交換学会誌, 16, 49-54 (2005).
- A. Kitajou, T. Suzuki, S. Nishihama and K. Yoshizuka
Recovery Process of Lithium from Seawater Using a Novel Spinel Type Manganese Dioxide Adsorbent
Ars Separatoria Acta, 2, 97-106 (2003).
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