[1]史姝娴 李致朋 马建民 蓝凌霄 金 晶 江卫良 曾文明7 周 彤8 吴元花7 詹 锋.表面改性对锰基锂电池电极材料电化学性能的影响[J].大众科技,2024,26(3):81-84.
[J].Popular Science & Technology,2024,26(3):81-84.
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表面改性对锰基锂电池电极材料电化学性能的影响()
《大众科技》[ISSN:1008-1151/CN:45-1235/N]
- 卷:
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26
- 期数:
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2024年第3期
- 页码:
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81-84
- 栏目:
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轻工与化工
- 出版日期:
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2024-06-20
文章信息/Info
- 作者:
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史姝娴1 李致朋2 马建民3 蓝凌霄4 金 晶5 江卫良6 曾文明7 周 彤8 吴元花7 詹 锋1
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(1.广西大学资源环境与材料学院,广西 南宁 530004;2.深圳市致远动力科技有限公司,广东 深圳 518055;3.湖南大学物理与微电子科学学院,湖南 长沙 410082;4.广西科技大学,广西 柳州 545006;5.深圳中芯能科技有限公司,广东
深圳 518000;6.深圳永泰数能科技有限公司,广东 深圳 518000;7.广西桂柳新材料股份有限公司,广西 柳州 545005;
8.湘潭电化科技股份有限公司,湖南 湘潭 411100)
- 关键词:
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包覆技术; 改性技术; 锰基锂电池
- 分类号:
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TM91
- 文献标志码:
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A
- 摘要:
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为满足新发展阶段对新能源的要求,电池应用规模不断扩大。在此背景下,锰基锂电池成为电池发展的重要方向,对各种锰基锂电池的探索及其缺陷改善、性能提高的研究源源不断地被提出。锰基锂电池类型主要包括富锂锰基、磷酸锰铁锂、锰酸锂和锰基三元4种。文章通过探究锰基锂电池包覆技术和改性技术对于锰基锂电池电化学性能的影响,为未来锰基锂电池的进一步探索提供参考。
参考文献/References:
【参考文献】
[1] DA SILVA LIMA L,QUARTIER M,BUCHMAYR A,et al. Life cycle assessment of lithium-ion batteries and vanadium redox flow batteries-based renewable energy storage systems[J]. Sustainable Energy Technologies and Assessments,2021,46:101286.
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[3] ZHENG H F,HAN X,GUO W B,et al. Recent developments and challenges of Li-rich Mn-based cathode materials for high-energy lithium-ion batteries[J]. Materials Today Energy,2020,18:100518.
[4] LIU F,SUN K,WEI T,et al. Synergistic effect of interlayered doping and surface modification to improve the performance of Li-rich manganese-based cathode materials[J]. Journal of Alloys and Compounds,2024,994:174759.
[5] DING X H,LIU Q,ZHU H T. Improvement of electrochemical properties of lithium-rich manganese-based cathode materials by Ta2O5[J]. Journal of Solid State Electrochemistry,2022,26(4):1115-1123.
[6] ZHANG J L,ZHANG D,WANG Z S,et al. AlF3 coating improves cycle and voltage decay of Li-rich manganese oxides[J]. Journal of Materials Science,2023,58(10):4525-4540.
[7] LUO C,JIANG Y,ZHANG X X,et al. Misfit strains inducing voltage decay in LiMnyFe1?PO4/C[J]. Journal of Energy Chemistry,2022,68:206-212.
[8] DING D,MAEYOSHI Y,KUBOTA M,et al. A facile way to synthesize carbon-coated LiMn0.7Fe0.3PO4 graphene oxide sandwich-structured composite for lithium-ion batteries[J]. ACS Applied Energy Materials,2019,2(3):1727-1733.
[9] 李晨威,徐世国,余海峰,等. 镁掺杂改性LiMn0.5Fe0.5PO4/C 正极材料与性能研究[J/OL]. 储能科学与技术,2024-01-22[2024-03-03].https://doi.org/ 10.19799/j.cnki.2095-4239.2023.0942.
[10] CHUNG K Y,KIM K B. Investigations into capacity fading as a result of a Jahn-Teller distortion in 4V LiMn2O4 thin film electrodes[J]. Electrochimica Acta,2004,49(20):3327-3337.
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[12] LI X F,XU Y L,WANG C L. Suppression of Jahn-Teller distortion of spinel LiMn2O4 cathode[J]. Journal of Alloys and Compounds,2009,479(1-2):310-313.
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备注/Memo
- 备注/Memo:
-
【收稿日期】2024-03-28
【基金项目】广西创新驱动重大专项桂科(AA17204063);国家自然科学基金(No.11364003)。
【第一作者】史姝娴(2003-),女,学生,研究方向为新能源锂离子电池材料。
【通信作者】詹锋(1980-),男,教授,博士,研究方向为新能源锂离子电池材料。
更新日期/Last Update:
2024-08-06