LITHIUM-ION_BATTERIES

作品数:963被引量:2480H指数:18
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相关作者:胡先罗郭军贺跃辉胡传跃徐洪辉更多>>
相关机构:中南大学华中科技大学桂林理工大学湘潭大学更多>>
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Catalysis-Induced Highly-Stable Interface on Porous Silicon for High-Rate Lithium-Ion Batteries
《Nano-Micro Letters》2025年第8期548-563,共16页Zhuobin Han Phornphimon Maitarad Nuttapon Yodsin Baogang Zhao Haoyu Ma Kexin Liu Yongfeng Hu Siriporn Jungsuttiwong Yumei Wang Li Lu Liyi Shi Shuai Yuan Yongyao Xia Yingying Lv 
the National Key R&D Plan of the Ministry of Science and Technology of China(2022YFE0122400);National Natural Science Foundation of China(52002238,22102207);Science and Technology Commission of Shanghai Municipality(22ZR1423800,21ZR1465200,23ZR1423600);Shanghai Municipal Education Commission and the NSRF via the Program Management Unit for Human Resources&Institutional Development,Research and Innovation(B49G680115).
Silicon stands as a key anode material in lithium-ion battery ascribing to its high energy density.Nevertheless,the poor rate performance and limited cycling life remain unresolved through conventional approaches that...
关键词:Catalytic interface MESOPOROUS Inorganic-rich SEI Silicon anode Lithium-ion batteries 
Breaking Solvation Dominance Effect Enabled by Ion-Dipole Interaction Toward Long-Spanlife Silicon Oxide Anodes in Lithium-Ion Batteries
《Nano-Micro Letters》2025年第4期367-380,共14页Shengwei Dong Lingfeng Shi Shenglu Geng Yanbin Ning Cong Kang Yan Zhang Ziwei Liu Jiaming Zhu Zhuomin Qiang Lin Zhou Geping Yin Dalong Li Tiansheng Mu Shuaifeng Lou 
supported by the National Natural Science Foundation of China(22279026);the National Key Research and Development Program of China(2022YFE0138900);the Young Elite Scientist sponsorship program by CAST(no.20200148);the Natural Science Funds of Heilongjiang Province(YQ2021B003);the Fundamental Research Funds for the Central Universities(grant no.HIT.OCEF.2022017).
Micrometer-sized silicon oxide(SiO)anodes encounter challenges in large-scale applications due to significant volume expansion during the alloy/de-alloy process.Herein,an innovative deep eutectic electrolyte derived f...
关键词:Lithium-ion batteries Micrometer-sized silicon oxide Ion-dipole interaction Long-term cycling 
A Neural Network-Driven Method for State of Charge Estimation Using Dynamic AC Impedance in Lithium-Ion Batteries
《Computers, Materials & Continua》2025年第4期823-844,共22页Yi-Feng Luo Guan-Jhu Chen Chun-Liang Liu Yen-Tse Chung 
As lithium-ion batteries become increasingly prevalent in electric scooters,vehicles,mobile devices,and energy storage systems,accurate estimation of remaining battery capacity is crucial for optimizing system perform...
关键词:Lithium-ion batteries state of charge(SOC) dynamic AC impedance artificial neural network(ANN) 
A review of the use of electrospinning in the preparation of flexible lithium-ion batteries
《新型炭材料(中英文)》2025年第2期270-292,共23页XING Jia-yi ZHANG Yu-zhuo FENG Shu-xin JI Ke-meng 
国家自然科学基金(22379110);天津市自然科学基金(20JCQNJC01280).
Electrospinning technology has emerged as a promising method for fabricating flexible lithium-ion batter-ies(FLIBs)due to its ability to create materials with desir-able properties for energy storage applications.FLIB...
关键词:Electrospinning technology Flexible lithium-ion batteries(FLIBs) Carbon material application Nanofiber electrodes Electrochemical energy storage and conversion 
A N-doped carbon with encapsulated Fe and Co particles derived from a metal organic framework for use as the anode in lithium-ion batteries
《新型炭材料(中英文)》2025年第2期363-376,共14页CHEN Ren-tian ZHU Yu-xin LUO Rui JIANG Xiao-nuo SI Hong-xiang QIU Xiang-yun WANG Qian WEI Tao 
国家自然科学基金(21701083,22179054);江苏省关键技术研发项目(BZ2023010).
Metal-organic frameworks(MOFs)are import-ant as possible energy storage materials.Nitrogen-doped iron-cobalt MOFs were synthesized by a one-pot solvo-thermal method using CoCl_(3)·6H_(2)O and FeCl_(3)·6H_(2)O dis-so...
关键词:Metal-organic frameworks FeCo alloy Lithium-ion battery Anode materials 
Revealing the effect of external pressure on solid-electrolyte interphase and lithium plating in lithium-ion batteries
《Journal of Energy Chemistry》2025年第3期734-744,共11页Rui Xiong Haocheng Li Bing-Ang Mei Hongwen He Weixiang Shen 
supported by the National Key R&D Program of China(Grant No.2023YFB2503800)。
Lithium plating is a detrimental phenomenon in lithium-ion cells that compromises both functionality and safety.This study investigates electro-chemo-mechanical behaviors of lithium plating in lithium iron phosphate p...
关键词:Lithium-ion batteries OVERCHARGE Lithium plating Electrochemical mechanics Synergistic effects 
Zn^(2+) significantly enhances the performance of petal-like Conaphthalenetetracarboxylic acid MOF as an anode material for lithium-ion batteries
《Chinese Journal of Chemical Engineering》2025年第3期164-171,共8页Qin Cheng Pengfei Ma Ruize Yin Chaodi Wang Weiwei Xiong Zhongyao Duan Fu Yang Junhao Zhang 
support from the National Natural Science Foundation of China for Youths(21701059);the Natural Science Foundation of Jiangsu Province for Youths(BK20170571);support from the Postgraduate Research&Practice Innovation Program of Jiangsu Province(SJCX24_2600).
Metal-organic frameworks(MOFs),with their ultrahigh specific surface area,uniformly distributed pores,and tunable structures,are promising candidates for next-generation active electrode materials in lithium-ion batte...
关键词:Naphthalenetetracarboxylic acid Lithium-ion batteries Multi-solvent strategy Electrochemistry Hydrothermal Composites 
Vapor-phase conversion of waste silicon powders to silicon nanowires for ultrahigh and ultra-stable energy storage performance
《Journal of Energy Chemistry》2025年第3期27-36,共10页Hao Li Qiushi Chen Lili Feng Yueling Zou Xuzhong Gong Zhi Wang Junhao Liu 
partially funded by the National Natural Science Foundation of China(52074255,52274412)。
Silicon nanowires(SiNWs)have been used in a wide variety of applications over the past few decades due to their excellent material properties.The only drawback is the high production cost of SiNWs.The preparation of S...
关键词:Photovoltaicwastesilicon powders Silicon nanowires Vapor-phaseconversion Lithium-ion batteries Silicon-carbon anode electrode 
Efficient and Stable Photoassisted Lithium‑Ion Battery Enabled by Photocathode with Synergistically Boosted Carriers Dynamics
《Nano-Micro Letters》2025年第3期440-454,共15页Zelin Ma Shiyao Wang Zhuangzhuang Ma Juan Li Luomeng Zhao Zhihuan Li Shiyuan Wang Yazhou Shuang Jiulong Wang Fang Wang Weiwei Xia Jie Jian Yibo He Junjie Wang Pengfei Guo Hongqiang Wang 
supported by the project of the National Natural Science Foundation of China(52202115 and 52172101);Guangdong Basic and Applied Basic Research Foundation(2024A1515012325);the Natural Science Foundation of Chongqing,China(CSTB2022NSCQ-MSX1085);the Shaanxi Science and Technology Innovation Team(2023-CXTD-44);the Fundamental Research Funds for the Central Universities(G2022KY0604).
Efficient and stable photocathodes with versatility are of significance in photoassisted lithium-ion batteries(PLIBs),while there is always a request on fast carrier transport in electrochemical active photocathodes.P...
关键词:Photoassisted lithium-ion batteries Bulk heterojunction Carrier dynamics TiO2 nanofiber Plasmonic metal nanocrystals 
Spatially confined synthesis of TiNb_(2)O_(7)quantum dots onto mesoporous carbon and Ti_(3)C_(2)T_(X)MXene for boosting lithium storage
《Green Energy & Environment》2025年第2期358-366,共9页Daoguang Sun Cheng Tang Haitao Li Xinlin Zhang Guanjia Zhu Zhen-Dong Huang Aijun Du Haijiao Zhang 
support from the Natural Science Foundation of Shanghai(23ZR1423800),Shuguang Program supported by Shanghai Education Development Foundation and Shanghai Municipal Education Commission(18SG35);Open Research Fund of Shanghai Key Laboratory of Green Chemistry and Chemical Processes(East China Normal University);Key Laboratory of Advanced Energy Materials Chemistry(Ministry of Education),Nankai University.
TiNb_(2)O_(7)has been emerged as one of the most promising electrode materials for high-energy lithium-ion batteries.However,limited by the slow electron/ion transport kinetics,and insufficient active sites in the bul...
关键词:TiNb_(2)O_(7)quantum dots Ti_(3)C_(2)T_(X)MXene Mesoporous carbon Confined synthesis Lithium-ion batteries 
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