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Energy Storage Materials from Nature through Nanotechnology: A Sustainable Route from Reed Plants to a Silicon Anode for Lithium-Ion Batteries

机译:通过纳米技术从自然界中获取能量的材料:从芦苇植物到锂离子电池硅阳极的可持续路线

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摘要

Silicon is an attractive anode material in energy storage devices, as it has a ten times higher theoretical capacity than its state-of-art carbonaceous counterpart. However, the common process to synthesize silicon nanostructured electrodes is complex, costly, and energy-intensive. Three-dimensional (3D) porous silicon-based anode materials have been fabricated from natural reed leaves by calcination and magnesiothermic reduction. This sustainable and highly abundant silica source allows for facile production of 3D porous silicon with very good electrochemical performance. The obtained silicon anode retains the 3D hierarchical architecture of the reed leaf. Impurity leaching and gas release during the fabrication process leads to an interconnected porosity and the reductive treatment to an inside carbon coating. Such anodes show a remarkable Li-ion storage performance: even after 4000 cycles and at a rate of 10C, a specific capacity of 420mAhg(-1) is achieved.
机译:硅是储能设备中有吸引力的阳极材料,因为它的理论容量比最先进的碳质对应物高十倍。然而,合成硅纳米结构电极的普通方法是复杂,昂贵和耗能的。三维(3D)多孔硅基阳极材料已通过煅烧和镁热还原从天然芦苇叶制成。这种可持续且高度丰富的二氧化硅源可轻松生产具有良好电化学性能的3D多孔硅。所获得的硅阳极保留了芦苇叶的3D层次结构。在制造过程中的杂质浸出和气体释放会导致相互连接的孔隙率,并对内部碳涂层进行还原处理。这样的阳极显示出非凡的锂离子存储性能:即使经过4000次循环并以10C的速率运行,也可以实现420mAhg(-1)的比容量。

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