[1] |
Qiannan LIU, Weiping HU, Zhe HU.
Research progress of phosphorus-based anode materials for sodium-ion batteries
[J]. Energy Storage Science and Technology, 2022, 11(4): 1201-1210.
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[2] |
Dewang SUN, Bizhi JIANG, Tao YUAN, Shiyou ZHENG.
Research progress of titanium niobium oxide used as anode of lithium-ion batteries
[J]. Energy Storage Science and Technology, 2021, 10(6): 2127-2143.
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[3] |
Qiang CHEN, Min LI, Jingfa LI.
Application of Prussian blue analogs and their derivatives in potassium ion batteries
[J]. Energy Storage Science and Technology, 2021, 10(3): 1002-1015.
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[4] |
Tenghui WANG, Guo CHEN, Xuelin YANG.
Review of preparations of amorphous nanostructured silicon powder
[J]. Energy Storage Science and Technology, 2021, 10(2): 440-447.
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[5] |
Guangling WEI, Ying JIANG, Jiahui ZHOU, Ziheng WANG, Yongxin HUANG, Man XIE, Feng WU.
Research progress on metal oxides/sulfides/selenides anode materials of sodium ion batteries
[J]. Energy Storage Science and Technology, 2020, 9(5): 1318-1326.
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[6] |
MA Tengfei, MA Chao, SUN Rui, JI Hongmei, YANG Gang.
Freeze-drying assisted synthesis of mno/reduced graphene composite and the improved rate cyclic performance for lithium ion batteries
[J]. Energy Storage Science and Technology, 2020, 9(4): 1044-1051.
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[7] |
ZHOU Junhua, LUO Fei, CHU Geng, LIU Bonan, LU Hao, ZHENG Jieyun, LI Hong, HUANG Xuejie, CHEN Liquan.
Research progress on nano silicon-carbon anode materials for lithium ion battery
[J]. Energy Storage Science and Technology, 2020, 9(2): 569-582.
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[8] |
LI Zhendong, WANG Zhenhua, ZHANG Shilong, FU Chunlin.
Research progress of MOFs and its derivatives as electrode materials for lithium ion batteries
[J]. Energy Storage Science and Technology, 2020, 9(1): 18-24.
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[9] |
LIU Xingwen, HE Jinxin, WANG Hailin, JIN Chengyou, MIAO Yonghua, XUE Chi.
Preparation and electrochemical performance of F-doped SiO@C composite material
[J]. Energy Storage Science and Technology, 2019, 8(S1): 56-59.
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[10] |
SHEN Jinran, GUO Cuijing, CHEN He, ZHOU Shuqin, XU Bin, GUAN Yibiao.
Synthesis and lithium storage property of high-performance N-doped reduced graphene oxide
[J]. Energy Storage Science and Technology, 2019, 8(6): 1137-1144.
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[11] |
XU Hui, YANG Liuqing, YIN Fan, YANG Gang.
Preparation and electrochemical performance of amorphous carbon coated tin-based anode materials
[J]. Energy Storage Science and Technology, 2019, 8(4): 732-737.
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[12] |
FENG Guofei, WU Jianguo, LIU Wei, XU Shenghua, LIN Zhizhu.
Carbonization process of artifcial graphite coated with asphalt
[J]. Energy Storage Science and Technology, 2019, 8(3): 580-582.
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[13] |
GAO Xiang, ZHU Zirui.
Applications of atomic force microscopy in lithium ion batteries research
[J]. Energy Storage Science and Technology, 2019, 8(1): 75-82.
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[14] |
ZHOU Junhua, ZHU Geng, LU Hao, LIU Bonan, LUO Fei, ZHENG Jieyun, CHEN Shimou, GUO Yuguo, LI Hong.
Interpretation of anode material standards for lithium ion batteries
[J]. Energy Storage Science and Technology, 2019, 8(1): 215-223.
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[15] |
LIU Lujing, JIA Zhijun, WANG Yi, QI Tao.
Recent research progress of Li4Ti5O12 as anode materials for lithium-ion batteries
[J]. Energy Storage Science and Technology, 2018, 7(S1): 17-25.
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