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首页> 外文期刊>Electrochemistry communications >Temperature effect upon the thermoelectrochemical potential generated between lithium metal and lithium ion intercalation electrodes in symmetric and asymmetric battery arrangements
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Temperature effect upon the thermoelectrochemical potential generated between lithium metal and lithium ion intercalation electrodes in symmetric and asymmetric battery arrangements

机译:对称和不对称电池布置中锂金属和锂离子插入电极之间产生的热电化学电位的温度效应

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AbstractThe evaluation of batteries under thermal gradients is essential for safety and longevity reasons, and to investigate power generationviathe thermogalvanic effect. The thermogalvanic Seebeck coefficient of lithium metal (+1.0mV·K?1) and solid lithium ferri/ferrocyanide intercalation electrodes (?0.6mV·K?1) were determined. The measured Seebeck coefficients of identical asymmetric cells containing both electrodes deviated from the expected values, having Seebeck coefficients which also varied as a function of thermal conditions (+0.7 to +4.3mV·K?1). This work demonstrates that the thermal responses of asymmetric battery assemblies are more complex than predicted based upon their individual half-cell performances in symmetric cells.Graphical abstractDisplay OmittedHighlights?Lithium has a significant thermogalvanic See
机译:<![cdata [ 抽象 在热梯度下的电池评估对于安全和寿命的原因至关重要,并调查发电通过热寄生虫效果。锂金属的热寄生虫塞贝克系数(+ 1.0mV·k α1)和固体锂ferri / ferroyyanide插入电极(Δ0.6mv·k ?1 )。具有偏离预期值的两个电极的相同不对称单元的测量的eDbeck系数,该电极具有塞匹克系数,该系数也随着热条件的函数而变化(+0.7至+ 4.3mV·k ?1 )。这项工作表明,基于对称单元中的各自半电池性能,不对称电池组件的热响应比预测更复杂。 图形抽象 显示省略 突出显示 锂具有一个显着的热寄生虫

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