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Mesoporous Si and multi-layered Si/C films by Pulsed Laser Deposition as Li-ion microbattery anodes

机译:脉冲激光沉积作为锂离子微电池阳极的介孔硅和多层Si / C膜

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摘要

Silicon is a very attractive Li-ion battery anode material due to its high theoretical capacity, but proper nanostructuring is needed to accommodate the large volume expansion/shrinkage upon reversible cycling. Hereby, novel mesoporous Si nanostructures are grown at room temperature by simple and rapid Pulsed Laser Deposition (PLD) directly on top of the Cu current collector surface. The samples are characterised from the structural/morphological viewpoint and their promising electrochemical behaviour demonstrated in lab-scale lithium cells. Depending on the porosity, easily tuneable by PLD, specific capacities approaching 250 μAh cm−2 are obtained. Successively, newly elaborated bicomponent silicon/carbon nanostructures are fabricated in one step by alternating PLD deposition of Si and C, thus resulting in novel multi-layered composite mesoporous films exhibiting profoundly improved performance. Alternated deposition of Si/C layers by PLD is proven to be a straightforward method to produce multi-layered anodes in one processing step. The addition of carbon and mild annealing at 400 °C stabilize the electrochemical performance of the Si based nanostructures in lab-scale lithium cells, allowing to reach very stable prolonged reversible cycling at improved specific capacity values. This opens the way to further reducing processing steps and processing time, which are key aspects when upscaling is sought.
机译:硅由于其高的理论容量而成为一种非常有吸引力的锂离子电池负极材料,但是需要适当的纳米结构以适应可逆循环时的大体积膨胀/收缩。因此,在室温下通过简单快速的脉冲激光沉积(PLD)直接在Cu集电器表面上生长出新颖的介孔Si纳米结构。从结构/形态的角度对样品进行了表征,并在实验室规模的锂电池中证明了其有希望的电化学行为。根据孔隙率(可通过PLD轻松调节),获得的比电容接近250μAhcm-2。随后,通过交替进行Si和C的PLD沉积,一步就可以制造出新制作的双组分硅/碳纳米结构,从而获得了性能显着改善的新型多层复合介孔膜。事实证明,通过PLD交替沉积Si / C层是在一个处理步骤中生产多层阳极的直接方法。碳的添加和400°C的温和退火可稳定实验室规模的锂电池中基于Si的纳米结构的电化学性能,从而在提高的比容值下实现非常稳定的延长的可逆循环。这为进一步减少处理步骤和处理时间开辟了道路,这是寻求扩大规模时的关键方面。

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