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Electrochemical and mechanical failure of graphite-based anode materials in li-ion batteries for electric vehicles
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نویسنده
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lin c. ,tang a. ,wu n. ,xing j.
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منبع
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journal of chemistry - 2016 - دوره : 2016 - شماره : 0
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چکیده
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Graphite-based anode materials undergo electrochemical reactions,coupling with mechanical degradation during battery operation,can affect or deteriorate the performance of li-ion batteries dramatically,and even lead to the battery failure in electric vehicle. first,a single particle model (spm) based on kinetics of electrochemical reactions was built in this paper. then the li-ion concentration and evolution of diffusion induced stresses (diss) within the spm under galvanostatic operating conditions were analyzed by utilizing a mathematical method. next,evolution of stresses or strains in the spm,together with mechanical degradation of anode materials,was elaborated in detail. finally,in order to verify the hypothesis aforementioned surface and morphology of the graphite-based anode dismantled from fresh and degraded cells after galvanostatic charge/discharge cycling were analyzed by x-ray diffraction (xrd),field-emission scanning electron microscopy (sem),and transmission electron microscopy (tem). the results show that large volume changes of anode materials caused diss during li-ion insertion and extraction within the active particles. the continuous accumulations of diss brought about mechanical failure of the anode eventually. © 2016 cheng lin et al.
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آدرس
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national engineering laboratory for electric vehicles,collaborative innovation center of electric vehicles in beijing,school of mechanical engineering,beijing institute of technology,beijing, China, national engineering laboratory for electric vehicles,collaborative innovation center of electric vehicles in beijing,school of mechanical engineering,beijing institute of technology,beijing,china,sichuan provincial key lab of process equipment and control,school of mechanical engineering,sichuan university of science and engineering,zigong, China, citic guoan mengguli power source technology co.,ltd,beijing, China, national engineering laboratory for electric vehicles,collaborative innovation center of electric vehicles in beijing,school of mechanical engineering,beijing institute of technology,beijing, China
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Authors
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