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首页> 外文期刊>Scientific reports. >Si Nanocrystal-Embedded SiO x nanofoils: Two-Dimensional Nanotechnology-Enabled High Performance Li Storage Materials
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Si Nanocrystal-Embedded SiO x nanofoils: Two-Dimensional Nanotechnology-Enabled High Performance Li Storage Materials

机译:Si纳米晶体嵌入式SiO X纳米油:启用二维纳米技术的高性能Li储存材料

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Silicon (Si) based materials are highly desirable to replace currently used graphite anode for lithium ion batteries. Nevertheless, its usage is still a big challenge due to poor battery performance and scale-up issue. In addition, two-dimensional (2D) architectures, which remain unresolved so far, would give them more interesting and unexpected properties. Herein, we report a facile, cost-effective, and scalable approach to synthesize Si nanocrystals embedded 2D SiO x nanofoils for next-generation lithium ion batteries through a solution-evaporation-induced interfacial sol-gel reaction of hydrogen silsesquioxane (HSiO1.5, HSQ). The unique nature of the thus-prepared centimeter scale 2D nanofoil with a large surface area enables ultrafast Li+ insertion and extraction, with a reversible capacity of more than 650 mAh g?1, even at a high current density of 50?C (50?A?g?1). Moreover, the 2D nanostructured Si/SiO x nanofoils show excellent cycling performance up to 200 cycles and maintain their initial dimensional stability. This superior performance stems from the peculiar nanoarchitecture of 2D Si/SiO x nanofoils, which provides short diffusion paths for lithium ions and abundant free space to effectively accommodate the huge volume changes of Si during cycling.
机译:基于硅(Si)的材料非常希望替换目前用于锂离子电池的使用石墨阳极。尽管如此,由于电池性能差和扩展问题,其使用仍然是一个很大的挑战。此外,到目前为止仍未解决的二维(2D)架构将为它们提供更有趣和意外的属性。在此,我们通过溶液蒸发诱导的氢硅氧烷(HSIO1.5,HSIO1.5,HSIO1.5,HSIO1.5,HSIO1.5, HSQ)。具有大表面积的如此制备的厘米级2D纳米罐的独特性使Ultrafast Li +插入和提取,可逆容量超过650mAh·1,即使在50Ω·C的高电流密度(50? a?g?1)。此外,2D纳米结构的Si / SiO X纳米油显示出优异的循环性能,可达200​​次循环,并保持其初始尺寸稳定性。这种卓越的性能源于2D Si / SiO X纳米纸体的特殊纳米建筑,其为锂离子提供短扩散路径和丰富的自由空间,以有效地容纳循环期间Si的巨大变化。

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