首页> 外文期刊>Electrochimica Acta >An investigation of intercalation-induced stresses generated during lithium transport through sol-gel derived Li{sub}xMn{sub}2O{sub}4 film electrode using a laser beam deflection method
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An investigation of intercalation-induced stresses generated during lithium transport through sol-gel derived Li{sub}xMn{sub}2O{sub}4 film electrode using a laser beam deflection method

机译:用激光束偏转法研究锂在通过溶胶凝胶衍生的Li {sub} xMn {sub} 2O {sub} 4薄膜电极传输过程中产生的嵌入诱导应力

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摘要

The stress changes Acr generated during lithium transport through the sol-gel derived Li{sub}xMn{sub}2O{sub}4 film electrodes annealed at 773 and 873 K were quantitatively determined as a function of the lithium stoichiometry x using a laser beam deflection method (LBDM). Δσ generated during a real potential step between an initial electrode potential and a final applied potential was uniquely specified by the Δσ versus x curve. The Li{sub}xMn{sub}2O{sub}4 film annealed at 773 K for 24 h (low temperature (LT)-Li{sub}xMn{sub}2O{sub}4) showed larger capacity than the Li{sub}xMn{sub}2O{sub}4 film annealed at 873 K for 6 h (high temperature (HT)-Li{sub}xMn{sub}2O{sub}4) and this result is ascribed to the fact that the smaller the grain size is, the more increases the electrochemically active area of the film electrode. From the analysis of the normalised Acr transient measured simultaneously along with the cyclic voltammogram in the potential range of 2.5-3.4 V{sub}(Li/Li{sup}+), it is found that normalised Aa generated in the LT-Li{sub}xMn{sub}2O{sub}4 was smaller than that in the HT-Li{sub}xMn{sub}2O{sub}4 during the lithium intercalation/de-intercalation around 3.0 V{sub}(Li/Li{sup}+) region. This result gives an experimental evidence for the fact that the Jahn-Teller distortion is suppressed by the increase in the average oxidation state of manganese with decreasing in annealing temperature.
机译:使用激光束定量确定锂在通过以773和873 K退火的溶胶凝胶衍生的Li {sub} xMn {sub} 2O {sub} 4薄膜电极传输过程中产生的应力变化Acr作为锂化学计量x的函数偏转法(LBDM)。在初始电极电势和最终施加电势之间的实际电势阶跃期间生成的Δσ由Δσ对x曲线唯一指定。 Li {sub} xMn {sub} 2O {sub} 4薄膜在773 K退火24 h(低温(LT)-Li {sub} xMn {sub} 2O {sub} 4)的容量比Li { sub} xMn {sub} 2O {sub} 4薄膜在873 K退火6 h(高温(HT)-Li {sub} xMn {sub} 2O {sub} 4),该结果归因于以下事实:粒径越小,则膜电极的电化学活性面积越大。通过对在2.5-3.4 V {sub}(Li / Li {sup} +)电位范围内同时测量的归一化Acr瞬态以及循环伏安图进行分析,发现LT-Li {在大约3.0 V {sub}(Li / Li)的锂嵌入/脱嵌过程中,sub} xMn {sub} 2O {sub} 4小于HT-Li {sub} xMn {sub} 2O {sub} 4 {sup} +)区域。该结果提供了以下事实的实验证据:通过随着退火温度的降低锰的平均氧化态的增加而抑制了Jahn-Teller变形。

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