フォロー
Kei Kubota
Kei Kubota
Senior Researcher, Battery Materials Analysis Grop, Center for Green Research on Energy and Environmental Materials (GREEN), National Institute for Materials Science (NIMS)
確認したメール アドレス: nims.go.jp
タイトル
引用先
引用先
Research development on sodium-ion batteries
N Yabuuchi, K Kubota, M Dahbi, S Komaba
Chemical reviews 114 (23), 11636-11682, 2014
57582014
Potassium intercalation into graphite to realize high-voltage/high-power potassium-ion batteries and potassium-ion capacitors
S Komaba, T Hasegawa, M Dahbi, K Kubota
Electrochemistry Communications 60, 172-175, 2015
9892015
Research development on K-ion batteries
T Hosaka, K Kubota, AS Hameed, S Komaba
Chemical reviews 120 (14), 6358-6466, 2020
8942020
Towards K‐ion and Na‐ion batteries as “beyond Li‐ion”
K Kubota, M Dahbi, T Hosaka, S Kumakura, S Komaba
The chemical record 18 (4), 459-479, 2018
7672018
practical issues and future perspective for Na-ion batteries
K Kubota, S Komaba
Journal of The Electrochemical Society 162 (14), A2538, 2015
7122015
Negative electrodes for Na-ion batteries
M Dahbi, N Yabuuchi, K Kubota, K Tokiwa, S Komaba
Physical chemistry chemical physics 16 (29), 15007-15028, 2014
6742014
A novel K-ion battery: hexacyanoferrate (II)/graphite cell
X Bie, K Kubota, T Hosaka, K Chihara, S Komaba
Journal of Materials Chemistry A 5 (9), 4325-4330, 2017
4412017
P2-type Na 2/3 Ni 1/3 Mn 2/3− x Ti x O 2 as a new positive electrode for higher energy Na-ion batteries
H Yoshida, N Yabuuchi, K Kubota, I Ikeuchi, A Garsuch, M Schulz-Dobrick, ...
Chemical communications 50 (28), 3677-3680, 2014
4032014
New O2/P2‐type Li‐excess layered manganese oxides as promising multi‐functional electrode materials for rechargeable Li/Na batteries
N Yabuuchi, R Hara, M Kajiyama, K Kubota, T Ishigaki, A Hoshikawa, ...
Advanced Energy Materials 4 (13), 1301453, 2014
3602014
A new electrode material for rechargeable sodium batteries: P2-type Na 2/3 [Mg 0.28 Mn 0.72] O 2 with anomalously high reversible capacity
N Yabuuchi, R Hara, K Kubota, J Paulsen, S Kumakura, S Komaba
Journal of Materials Chemistry A 2 (40), 16851-16855, 2014
3352014
KVPO 4 F and KVOPO 4 toward 4 volt-class potassium-ion batteries
K Chihara, A Katogi, K Kubota, S Komaba
Chemical communications 53 (37), 5208-5211, 2017
2882017
Electrochemistry and Solid‐State Chemistry of NaMeO2 (Me = 3d Transition Metals)
K Kubota, S Kumakura, Y Yoda, K Kuroki, S Komaba
Advanced Energy Materials 8 (17), 1703415, 2018
2732018
Sodium and Manganese Stoichiometry of P2‐Type Na2/3MnO2
S Kumakura, Y Tahara, K Kubota, K Chihara, S Komaba
Angewandte Chemie International Edition 55 (41), 12760-12763, 2016
2672016
Black phosphorus as a high-capacity, high-capability negative electrode for sodium-ion batteries: investigation of the electrode/electrolyte interface
M Dahbi, N Yabuuchi, M Fukunishi, K Kubota, K Chihara, K Tokiwa, X Yu, ...
Chemistry of materials 28 (6), 1625-1635, 2016
2642016
Synthesis of hard carbon from argan shells for Na-ion batteries
M Dahbi, M Kiso, K Kubota, T Horiba, T Chafik, K Hida, T Matsuyama, ...
Journal of Materials Chemistry A 5 (20), 9917-9928, 2017
2582017
Layered oxides as positive electrode materials for Na-ion batteries
K Kubota, N Yabuuchi, H Yoshida, M Dahbi, S Komaba
Mrs Bulletin 39 (5), 416-422, 2014
2582014
P2-and P3-K x CoO 2 as an electrochemical potassium intercalation host
Y Hironaka, K Kubota, S Komaba
Chemical Communications 53 (26), 3693-3696, 2017
2472017
Sodium carboxymethyl cellulose as a potential binder for hard-carbon negative electrodes in sodium-ion batteries
M Dahbi, T Nakano, N Yabuuchi, T Ishikawa, K Kubota, M Fukunishi, ...
Electrochemistry Communications 44, 66-69, 2014
2392014
New Insight into Structural Evolution in Layered NaCrO2 during Electrochemical Sodium Extraction
K Kubota, I Ikeuchi, T Nakayama, C Takei, N Yabuuchi, H Shiiba, ...
The Journal of Physical Chemistry C 119 (1), 166-175, 2015
1932015
MgO‐template synthesis of extremely high capacity hard carbon for Na‐ion battery
A Kamiyama, K Kubota, D Igarashi, Y Youn, Y Tateyama, H Ando, ...
Angewandte Chemie International Edition 60 (10), 5114-5120, 2021
1912021
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