LI-ION_BATTERIES

作品数:286被引量:713H指数:11
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相关作者:张景萍张万红陈国华邓远富汤洁更多>>
相关机构:东北师范大学清华大学河南科技大学香港科技大学更多>>
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Synergistic enhancement of ion/electron transport by ultrafine nanoparticles and graphene in Li_(2)FeTiO_(4)/C/G nanofibers for symmetric Li-ion batteries
《Journal of Energy Chemistry》2025年第2期42-51,I0002,共11页Wenjie Ma Yakun Tang Yue Zhang Xiaohui Li Lang Liu Xueting Wang Yuliang Cao 
supported by the National Natural Science Foundation of China(22278347);the Excellent Doctoral Student Research Innovation Project of Xinjiang University of China(XJU2022BS048);the Postgraduate Innovation Project of Xinjiang Uygur Autonomous Region of China(XJ2023G027).
Low-cost Fe-based disordered rock salt(DRX)Li_(2)FeTiO_(4)is capable of providing high capacity(295 mA h g^(-1))by redox activity of cations(Fe^(2+)/Fe^(4+)and Ti^(3+)/Ti^(4+))and anionic oxygen.However,DRX structures...
关键词:Disordered rock salt Li_(2)FeTiO_(4) GRAPHENE 1D structure Rapid ion/electron transport Lithium-ion battery electrode 
A review of over-discharge protection through prelithiation in working lithium-ion batteries
《Journal of Energy Chemistry》2025年第2期437-452,I0009,共17页Hanchen Wang Yingtian Liu Mingze Jiang Qiang Zhang 
supported by the Beijing Natural Science Foundation(L233004);National Natural Science Foundation of China(62071274 and 22393900);National Key Research and Development Program of China(2021YFB2400300);Shuimu Tsinghua Scholar Program;Tsinghua University Initiative Scientific Research Program.
The demand for high safety and high reliability lithium-ion batteries(LIBs)is strongly considered for practical applications.However,due to their inherent self-discharge properties or abuse,LIBs face the threat of ove...
关键词:Li-ion batteries Over-discharge protection Zero-volt storage Electrode prelithiation Electrode potential regulation 
Quantifcation of solvent-mediated host-ion interaction in graphite intercalation compounds for extreme-condition Li-ion batteries
《Journal of Energy Chemistry》2025年第2期723-732,I0015,共11页Jia-Zhen Zhao Fu-Da Yu Ji-Huai Wu Zhang Lan Yi-Ming Xie Le-Qing Fan Lan-Fang Que Zhen-Bo Wang 
financially supported by the National Natural Science Foundation of China(52372191);the Natural Science Foundation of Fujian Province(2023J05047);the Natural Science Foundation of Xiamen,China(3502Z202372036);the support of the High-Performance Computing Center(HPCC)at Harbin Institute of Technology on first-principles calculations.
Achieving simultaneous fast-charging capabilities and low-temperature adaptability in graphite-based lithium-ion batteries(LIBs)with an acceptable cycle life remains challenging.Herein,an ether-based electrolyte with ...
关键词:Fast-charging LIBs Low-temperature performance Co-intercalation chemistry Li^(+)solvation structure Interfacial kinetics 
Pressure-Induced Pre-Lithiation Enables High-Performing Si Anodes in All-Solid-State Batteries
《Energy & Environmental Materials》2024年第6期1-3,共3页Weifei Hu Yuanyuan Li Jinping Liu 
supported by grants from the National Natural Science Foundation of China(Grant Nos.52072136,52272201,52172229,51972257);Yanchang Petroleum-WHUT Joint Program(yc-whlg-2022ky-05);Fundamental Research Funds for the Central Universities(104972024RSCrc0006)for financial support.
A commentary on pressure-induced pre-lithiation towards Si anodes in allsolid-state Li-ion batteries(ASSLIBs)using sulfide electrolytes(SEs)is presented.First,feasible pre-lithiation technologies for Si anodes in SE-b...
关键词:all-solid-state Li-ion batteries pre-lithiation pressure Si anode sulfide electrolyte 
All-solid-state Li-ion batteries with commercially available electrolytes:A feasibility review
《InfoMat》2024年第12期1-20,共20页Rainer Götz Raphael Streng Johannes Sterzinger Tim Steeger Matti M.Kaye Maksym Vitort Aliaksandr S.Bandarenka 
e-conversion funded by German Research Foundation,Grant/Award Number:EXC 2089/1-390776260。
The all-solid-state battery(ASSB)concept promises increases in energy density and safety;consequently recent research has focused on optimizing each component of an ideal fully solid battery.However,by doing so,one ca...
关键词:all-solid-state batteries anode-free composite cathodes energy density lithium metal 
Unraveling the chemical and structural evolution of novel Li-rich layered/rocksalt intergrown cathode for Li-ion batteries
《Chinese Chemical Letters》2024年第12期289-293,共5页Yongjian Li Xinyu Zhu Chenxi Wei Youyou Fang Xinyu Wang Yizhi Zhai Wenlong Kang Lai Chen Duanyun Cao Meng Wang Yun Lu Qing Huang Yuefeng Su Hong Yuan Ning Li Feng Wu 
sponsored by National Natural Science Foundation of China(No.22109010);National Key R&D Program of China(No.2021YFC2902905);Beijing Nova Program,Chongqing Outstanding Youth Fund(No.2022NSCQ-JQX3895);Chongqing Talents Plan for Young Talents(No.CQYC202005032);The Key Project of Chongqing Technology Innovation and Application Development(No.2022TIAD-DEX0024);the support from Beijing Institute of Technology Research Fund Program for Young Scholars;the support by the Shanghai Sailing Program(No.2023×0308–103–01)。
The prototype material,Li_(1.23)Ru_(0.41)Ni_(0.36)O_(2),is proposed to gain the deep and comprehensive understanding of chemical and structural changes of the novel layered/rocksalt intergrown cathodes.Synchrotronbase...
关键词:Cathode materials Intergrown structure Cationic-anionic redox Low strain Synchrotron characterizations 
Deep learning from three-dimensional lithium-ion battery multiphysics model part I:Data development
《Energy and AI》2024年第4期151-159,共9页Yiheng Pang Yun Wang Zhiqiang Niu 
Fast growing demands for electric vehicles require better longevity,safety and reliability for next-generation high-energy battery technologies.A data-centered battery management system is thus desired to interpret co...
关键词:Li-ion batteries Data development Multi-physics modeling Hot spot Machine learning 
A universal strategy of multi-objective active learning to accelerate the discovery of organic electrode molecules
《Science China Chemistry》2024年第11期3681-3687,共7页Jiayi Du Jun Guo Wei Liu Ziwei Li Gang Huang Xinbo Zhang 
supported by the National Key R&D Program of China (2022YFB2402200);the National Natural Science Foundation of China (92372206, 52271140, 52171194);the Jilin Province Science and Technology Development Plan Funding Project (YDZJ202301ZYTS545);the National Natural Science Foundation of China Excellent Young Scientists (Overseas);the Youth Innovation Promotion Association CAS (2020230)。
Organic electrode molecules hold significant potential as the next generation of cathode materials for Li-ion batteries. In this study, we have introduced a multi-objective active learning framework that leverages Bay...
关键词:organic electrode molecules Li-ion batteries active learning multi-objective Bayesian optimization 
Interface-reinforced solid-state electrochromic Li-ion batteries enabled by in-situ liquid-solid transitional plastic glues
《Journal of Energy Chemistry》2024年第11期96-104,共9页Ruidong Shi Kaiyue Liu Mingxue Zuo Mengyang Jia Zhijie Bi Xiangxin Guo 
National Natural Science Foundation of China (Grant Nos. 22379077 and 22005163)。
The electrochromic Li-ion batteries(ELIBs) combine the functions of electrochromism and energy storage,realizing the display of energy-storage levels by visual signals. However, the accompanying interfacial issues inc...
关键词:Electrochromic Li-ion batteries Interfacial issues Solid-state electrolytes Visualization 
Alleviating the sluggish kinetics of all-solid-state batteries via cathode single-crystallization and multi-functional interface modification
《Journal of Energy Chemistry》2024年第11期123-133,共11页Wen-Zhe Liu Xin-Hai Meng Zi-Yi Zhou Qiang Zheng Ji-Lei Shi Yue Gong Yu-Guo Guo 
National Key R&D Program of China (2023YFB2503900);National Natural Science Foundation of China (22222904, 22179133 and 12374176);CAS Project for Young Scientists in Basic Research (YSBR-058)。
The application of Li-rich Mn-based cathodes, the most promising candidates for high-energy-density Liion batteries, in all-solid-state batteries can further enhance the safety and stability of battery systems.However...
关键词:All-solid-state Li-ion batteries Li-rich Mn-based cathode materials KINETICS Interface Anion redox 
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