Journal of Inorganic Materials, Volume. 36, Issue 6, 623(2021)
[1] YING-YING HU, ZHAO-YIN WEN, et al. State-of- the-art research and development status of sodium batteries. Energy Storage Science and Technology, 2, 81-90(2013).
[2] GUAN-YE SHEN, CHEN LI, BING-LIANG XU et al. Economic allocation for energy storage system considering wind power. Journal of Northeast Electric Power University, 38, 27-34(2018).
[6] CHAO MA, XIAO-LIN ZHAO, M HARRIS M et al. Uric acid as an electrochemically active compound for sodium-ion batteries: stepwise Na+-storage mechanisms of π-conjugation and stabilized carbon anion. ACS Applied Materials & Interfaces, 9, 33934-33940(2017).
[25] A MENDIBOURD, C DELMAS, C HAGENMULLER. Electrochemical intercalation and deintercalation of NaxMnO2 bronzes. Academic Press, 57, 323-331(1985).
[26] W SOMERVILLE J, A SOBKOWIAK, N TAPIA-RUIZ et al. Nature of the “Z”-phase in layered Na-ion battery cathodes. Energy & Environmental Science, 12, 2223-2232(2019).
[29] M GUIGNARD, C DELMAS. Using a battery to synthesize new vanadium oxides. Chemistry Select, 2, 5800-5804(2017).
[30] PENG-FEI WANG, HU-RONG YAO, XIN-YU LIU et al. Na+/ vacancy disordering promises high-rate Na-ion batteries. Science Advances(2018).
[33] YOUWEI WANG, JUNKAI WANG, XIAOLIN ZHAO et al. Reducing the charge overpotential of Li-O2 batteries through band-alignment cathode design. Energy & Environmental Science, 13, 2540-2548(2020).
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Xiaojun ZHANG, Jiale LI, Wujie QIU, Miaosen YANG, Jianjun LIU.
Category: RESEARCH ARTICLE
Received: Sep. 14, 2020
Accepted: --
Published Online: Nov. 25, 2021
The Author Email: LIU Jianjun (jliu@mail.sic.ac.cn)