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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Chemical and electrochemical insertion of Li into the spinel structure of CuCr2Se4: ex situ and in situ observations by X-ray diffraction and scanning electron microscopy
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Chemical and electrochemical insertion of Li into the spinel structure of CuCr2Se4: ex situ and in situ observations by X-ray diffraction and scanning electron microscopy

机译:Li化学和电化学插入CuCr2Se4的尖晶石结构中:通过X射线衍射和扫描电子显微镜进行异位和原位观察

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摘要

The chemical and electrochemical insertion of lithium into the spinel structure of CuCr2Se4 was studied and the chemical reaction pathway was followed by ex situ X-ray diffraction on samples with different Li contents. The electrochemical reaction was investigated by in situ X-ray diffraction and in situ scanning electron microscopy. In the early steps of chemical intercalation, two phases with a different Li content coexist and Cu is extruded from the host material. After 4 days of Li intercalation, a conversion reaction is observed. The overall Li uptake is 8 Li ions per formula unit. The structural behaviour of the two intercalated phases at the early stages of intercalation is totally different. For one phase a strong expansion of the a-axis is observed while for the other phase it is only slightly affected by Li uptake. A three-step mechanism was found consisting of reduction of Se~- followed by a Cu-Li exchange and finally a complete reduction of Cr~(3+) to the metallic state accompanied by the formation of Li2Se. The discharge capacity of the first cycle amounts to 530 mAh g~(-1) and drops to about 380 mAh g~(-1) in the fifth cycle. In in situ SEM images the occurrence of Cu whiskers that partially grow out of the crystallites can be observed.
机译:研究了锂在CuCr2Se4的尖晶石结构中的化学和电化学插入,并对化学反应路径进行了异位X射线衍射,研究了不同Li含量的样品。通过原位X射线衍射和原位扫描电子显微镜研究电化学反应。在化学插入的早期步骤中,具有不同Li含量的两个相共存,并且Cu从主体材料中挤出。 Li嵌入4天后,观察到转化反应。每个配方单位的总Li吸收量为8 Li离子。在插入的早期,两个插入阶段的结构行为完全不同。对于一个相,观察到a轴的强烈膨胀,而对于另一相,它仅受到Li吸收的轻微影响。发现了三步机制,包括还原Se〜-,然后进行Cu-Li交换,最后将Cr〜(3+)完全还原为金属态,并形成Li2Se。第一循环的放电容量为530mAh g〜(-1),而在第五循环中下降至约380mAh g〜(-1)。在原位SEM图像中,可以观察到部分生长出微晶的Cu晶须的出现。

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