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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Sheil-by-Shell Synthesis and Applications of Carbon-Coated SnO2 Hollow Nanospheres in Lithium-Ion Battery
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Sheil-by-Shell Synthesis and Applications of Carbon-Coated SnO2 Hollow Nanospheres in Lithium-Ion Battery

机译:壳式壳合成碳包覆的SnO2空心纳米球在锂离子电池中的应用

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摘要

SnO2 hollow nanospheres were synthesized from glucose and SnCl2 solution under hydrothermal environment and calcinations. The carbon layer was then deposited as a buffer layer via hydrothermally treated glucose solution. The thickness of the SnO2 shell in the hollow structures could be adjusted by changing the concentration of the SnCl2 coating solution. The crystalline structure and morphological observation of the as-synthesized hollow structures were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The thickness of SnO2 under 0.1 and 1 M SnCl2 coating solution was 15 and 60 nm, respectively. It was demonstrated that the electrochemical performance was significantly improved by the hollow structure and strongly affected by the shell thickness of SnO2. The hollow structure with 15 nm in SnO2 thickness exhibited an outstanding reversible capacity of 500 mA hg~(-1) at 5 C. The extraordinary performance should be associated with the ultrafhin SnO2 shell and the carbon layer, which could accommodate the volume changes and prevent the agglomeration of Sn particles during cycling.
机译:在水热环境和煅烧条件下,由葡萄糖和SnCl2溶液合成了SnO2空心纳米球。然后通过水热处理的葡萄糖溶液沉积碳层作为缓冲层。中空结构中的SnO 2壳的厚度可以通过改变SnCl 2涂覆溶液的浓度来调节。通过X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征所合成的空心结构的晶体结构和形态观察。在0.1和1 M SnCl2涂层溶液下,SnO2的厚度分别为15和60 nm。已经证明,空心结构显着改善了电化学性能,并且SnO 2的壳厚度强烈影响了电化学性能。 SnO2厚度为15 nm的中空结构在5 C时具有500 mA hg〜(-1)的出色可逆容量。超薄SnO2壳和碳层应具有非凡的性能,可以适应体积变化和防止在循环过程中锡颗粒的团聚。

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