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首页> 外文期刊>Electrochimica Acta >Thermo-electrochemical study on LiMn_2O_4 lithium-ion cells during charge-discharge process
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Thermo-electrochemical study on LiMn_2O_4 lithium-ion cells during charge-discharge process

机译:LiMn_2O_4锂离子电池充放电过程的热电化学研究

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摘要

Electrochemical-calorimetric measurements were employed in this study to disclose the thermo-electrochemical behaviors of LiMn_2O_4 lithium-ion cells during charge-discharge process at various charge-discharge rates. The results showed that the specific capacity and the amount of heat were strongly affected by the charge-discharge rate. The specific capacity decreased and the amount of heat increased with increased rate. At low rate (0.1 C and 0.2 C), the cell exhibited smaller polarization and better reversibility, in which both reversible and irreversible heat contributed to the overall heat producation, whereas the irreversible heat dominated the overall heat production when the cell cycled at high rate (0.5 C, 1.0 C, and 2.0 C). A series of thermodynamic parameters of lithium-ion cells during the charge-discharge process, such as enthalpy change, entropy change and Gibbs free energy change, were achieved through the study of thermo-electrochemistry. These experimental results provided basic data for the battery thermal management and a new technique for a comprehensive evaluation of the thermal and electric performance of battery materials.
机译:在这项研究中,采用电化学量热法测量来揭示LiMn_2O_4锂离子电池在各种充放电速率下的充放电过程中的热电化学行为。结果表明,比容量和热量受充放电速率的强烈影响。比容降低,热量随速率增加而增加。在低速率(0.1 C和0.2 C)下,电池显示出较小的极化和更好的可逆性,其中可逆和不可逆的热量均有助于整体热量的产生,而当电池以高速率循环时,不可逆的热量则占整体热量的产生。 (0.5 C,1.0 C和2.0 C)。通过热电化学研究,获得了锂离子电池充放电过程中的一系列热力学参数,如焓变,熵变和吉布斯自由能变化。这些实验结果为电池热管理提供了基础数据,并为评估电池材料的热和电性能提供了一种新技术。

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