A low-cost and energy-saving preparation method for silicon derived from rice husks and lithium ion battery applications

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Abstract

Rich husks are used as the raw material for preparation of silicon nanoparticles from an aluminothermic reduction process. The synthetic process is conducted on a low temperature condition, avoiding the large energy consumption resulting from high temperature operation course. The fabricated silicon has a porous structure with average particle size of approximately 30 nm. The unique structure triggers pronounced electrochemical behavior for Li alloy/de-alloy reaction. The material delivers an initial discharge and charge capacity of 3844.7 mAhg-1 and 3144.4 mAhg-1 at the current density of 100 mA g-1. With the current density increasing to 6 A g-1 and 8 A g-1, the material shows a reversible capacity of 860.1 mAhg-1 and 413.4 mAhg-1, respectively. The low material fabrication cost and satisfactory electrochemical performance make the low temperature aluminothermic reduction to be a promising route for silicon fabrication for next-generation lithiumion battery.

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Guo, Z., Zhao, Y., Cai, Y., Hou, P., Zhao, L., Wang, B., … Wei, Y. (2019). A low-cost and energy-saving preparation method for silicon derived from rice husks and lithium ion battery applications. Materials Research Express, 6(4). https://doi.org/10.1088/2053-1591/aafa59

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