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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Origin of the electrochemical potential in intercalation electrodes: Experimental estimation of the electronic and ionic contributions for na intercalated into TiS2
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Origin of the electrochemical potential in intercalation electrodes: Experimental estimation of the electronic and ionic contributions for na intercalated into TiS2

机译:嵌入电极中电化学电位的起源:嵌入TiS2中的Na的电子和离子贡献的实验估计

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摘要

The use of photoelectron spectroscopy for the evaluation of the electrochemical potentials in intercalation phases is presented. An in situ prepared thin film electrochemical cell has been used to relate electrochemical quantities as the change of electrochemical potential with electronic properties measured in UHV, as well as with the change of the chemical potential of the electrons, which is equivalent to the position of the Fermi level inside the solid. The changes observed in photoemission data with intercalation are compared to galvanostatic experiments obtained in electrochemical setups using the same sample. From a comparison of the results it is possible to estimate the ionic and electronic contribution to the battery voltage. For Na intercalated into TiS2 the results indicate a contribution of the electronic component to the battery voltage of at least 60%.
机译:介绍了使用光电子能谱评估插层相中的电化学势。原位制备的薄膜电化学电池已用于将电化学量与电化学势的变化与在UHV中测得的电子性能以及电子化学势的变化(与电子的位置等效)相关联。费米水平内固。将在带夹层的光发射数据中观察到的变化与使用相同样品在电化学装置中获得的恒电流实验进行比较。从结果的比较可以估计离子和电子对电池电压的贡献。对于插入TiS2中的Na,结果表明电子组件对电池电压的贡献至少为60%。

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