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Applying Nanoscale Kirkendall Diffusion for Template-Free Kilogram-Scale Production of SnO2 Hollow Nanospheres via Spray Drying System

机译:通过喷雾干燥系统将纳米级Kirkendall扩散应用于无模板千克级生产SnO2空心纳米球

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摘要

A commercially applicable and simple process for the preparation of aggregation-free metal oxide hollow nanospheres is developed by applying nanoscale Kirkendall diffusion to a large-scale spray drying process. The precursor powders prepared by spray drying are transformed into homogeneous metal oxide hollow nanospheres through a simple post-treatment process. Aggregation-free SnO2 hollow nanospheres are selected as the first target material for lithium ion storage applications. Amorphous carbon microspheres with uniformly dispersed Sn metal nanopowder are prepared in the first step of the post-treatment process under a reducing atmosphere. The post-treatment of the Sn-C composite powder at 500 °C under an air atmosphere produces carbon- and aggregation-free SnO2 hollow nanospheres through nanoscale Kirkendall diffusion. The hollow and filled SnO2 nanopowders exhibit different cycling performances, with their discharge capacities after 300 cycles being 643 and 280 mA h g−1, respectively, at a current density of 2 A g−1. The SnO2 hollow nanospheres with high structural stability exhibit superior cycling and rate performances for lithium ion storage compared to the filled ones.
机译:通过将纳米级的Kirkendall扩散应用于大规模的喷雾干燥工艺,开发了一种商业上可应用且简单的制备无聚集金属氧化物空心纳米球的方法。通过简单的后处理过程,将通过喷雾干燥制备的前体粉末转化为均质的金属氧化物空心纳米球。选择无聚集的SnO2空心纳米球作为锂离子存储应用的第一个目标材料。在还原气氛下,在后处理过程的第一步中,制备出具有均匀分散的Sn金属纳米粉的非晶碳微球。在空气气氛下,在500°C下对Sn-C复合粉末进行后处理,通过纳米级的Kirkendall扩散产生无碳和无聚集的SnO2空心纳米球。空心和填充的SnO2纳米粉体表现出不同的循环性能,在2次A g -1 <电流密度下,300次循环后的放电容量分别为643和280 mA hg -1 。 / sup>。与填充的相比,具有高结构稳定性的SnO2中空纳米球在锂离子存储方面显示出优异的循环性能和速率性能。

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