4.8 Article

Sn0.9Si0.1/carbon core-shell nanoparticles for high-density lithium storage materials

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CHEMISTRY OF MATERIALS
卷 19, 期 5, 页码 982-986

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AMER CHEMICAL SOC
DOI: 10.1021/cm062035p

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Sn0.9Si0.1 core/carbon shell nanoparticles, with the sizes of 16 and 10 nm, were prepared by annealing as-prepared butyl-capped Sn0.9Si0.1 particles with an average particle size of 1 mu m. Even though as-prepared samples were severely encapsulated by butyl terminators, annealing led to pulverization of the bulky particles into core-shell nanoparticles with a shell thickness dependent on the annealing temperature. The core Sn0.9Si0.1 size was estimated to be constant at 6 nm, and the carbon shell thickness decreased from 10 to 4 nm with increasing annealing temperature from 600 to 700 degrees C, respectively. In addition, the carbon shell was found to be more ordered at 700 degrees C than at 600 degrees C. Sn0.9Si0.1 core/carbon shell nanoparticles exhibited excellent lithium storage ability at a high current rate, resulting in a value of 964 mA center dot h/g at a rate of 0.3 C (1 C = 1200 mA/g), and demonstrated good capacity retention after 50 cycles.

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