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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Morphology-controlled synthesis and lithium storage properties of SnO2@C@MoS2 hollow nanospheres with petaloid and granular MoS2 nanosheets as the external layer in different solvents
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Morphology-controlled synthesis and lithium storage properties of SnO2@C@MoS2 hollow nanospheres with petaloid and granular MoS2 nanosheets as the external layer in different solvents

机译:形态控制的SnO2 @ MOS2中空纳米球的形态控制合成和锂储存性能,具有花瓣和粒状MOS2纳米片作为不同溶剂中的外层

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摘要

We develop a novel method to design two kinds of SnO2@C@MoS2 hollow nanospheres in different solvents of (NH4)(2)MoS4 solution. SnO2@C@MoS2 hollow nanospheres with petaloid and granular MoS2 nanosheets as the external layer are rationally tailored by adjusting different solvents (water and N, NDimethylformamide). These two kinds of SnO2@C@MoS2 hollow nanospheres exhibit outstanding lithium storage properties for their reasonable nanocomponent-selection and rational structure-design. SnO2@C@MoS2 hollow nanospheres with petaloid/granular MoS 2 nanosheets yield the high reversible capacity of 1082/870 mAh g(-1) at 0.1 A g(-1) after 200 cycles and the capacity of 744/480 mAh g(-1) at 0.5 A g(-1) after 500 cycles, respectively. Notably, the large and fluffy MoS2 nanosheets in SnO2@C@MoS2 hollow nanospheres with petaloid MoS2 nanosheets are not easy to exfoliate during deep cycles and can enable the nanocomposites to have better contact with electrolyte, thus they have better integrity of hollow structures after deep cycles than SnO2@C@MoS2 hollow nanospheres with granular MoS2 nanosheets, resulting in optimized properties of SnO2@C@MoS2 hollow nanospheres with petaloid MoS2 nanosheets. This work sheds light on the morphology-controlled synthesis and performance optimization of other energy storage nanomaterials for high-performance. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们开发了一种新的方法来设计两种SnO2@C@MoS2空心纳米球在(NH4)(2)MoS4溶液的不同溶剂中。SnO2@C@通过调节不同的溶剂(水和N,N-甲基甲酰胺),以花瓣状和颗粒状的MoS2纳米片为外层,合理定制了MoS2空心纳米球。这两种SnO2@C@MoS2空心纳米球因其合理的纳米组分选择和合理的结构设计而具有优异的储锂性能。SnO2@C@含有花瓣状/颗粒状MoS 2纳米片的MoS 2空心纳米球在200次循环后在0.1 A g(-1)下产生1082/870 mAh g(-1)的高可逆容量,在500次循环后在0.5 A g(-1)下产生744/480 mAh g(-1)的容量。值得注意的是,大而蓬松的MoS2纳米片SnO2@C@含有花瓣状MoS2纳米片的MoS2空心纳米球在深循环过程中不易剥落,可以使纳米复合材料更好地与电解液接触,因此它们在深循环后的空心结构完整性优于其他材料SnO2@C@MoS2空心纳米球和颗粒状MoS2纳米片,优化了材料的性能SnO2@C@带有花瓣状MoS2纳米片的MoS2空心纳米球。这项工作为其他高性能储能纳米材料的形貌控制合成和性能优化提供了依据。(C) 2020爱思唯尔B.V.版权所有。

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