首页> 外文期刊>Electrochemical and solid-state letters >Electrochemical Activity of Li in the Transition-Metal Sites of O3 Li[Li_((1-2x)/3)Mn_((2-x)/3)Ni_x]O_2
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Electrochemical Activity of Li in the Transition-Metal Sites of O3 Li[Li_((1-2x)/3)Mn_((2-x)/3)Ni_x]O_2

机译:Li在O3过渡金属位中的电化学活性Li [Li _((1-2x)/ 3)Mn _((2-x)/ 3)Ni_x] O_2

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摘要

A combination of first principles calculations and lithium NMR spectroscopy was used to examine the effect of electrochemical cycling on lithium ions located in the transition metal layers in layered lithium nickel manganates. These lithium ions participate in the electrochemical process with NMR results showing that they are removed from the octahedral sites on charging, but return on discharging. Calculations indicate that the lithium ions become increasingly unstable, as the concentration of vacancies in the lithium layers increases. A lithium ion nearby three vacancies in the lithium layers drops immediately, with no activation barrier, into the adjacent tetrahedral site in the lithium layers; charging to higher potentials is then required to remove this lithium ion.
机译:将第一原理计算和锂NMR光谱相结合,以检查电化学循环对层状锰酸锂镍中位于过渡金属层中的锂离子的影响。这些锂离子通过NMR结果参与电化学过程,表明在充电时将其从八面体位置除去,但在放电时返回。计算表明,随着锂层中空位浓度的增加,锂离子变得越来越不稳定。锂层中三个空位附近的锂离子会立即掉落,没有激活势垒,进入锂层中相邻的四面体位置;然后需要充电至更高的电位以除去该锂离子。

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