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Tin nanoparticles as an effective conductive additive in silicon anodes

机译:锡纳米颗粒作为硅阳极中的有效导电添加剂

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摘要

We have found that the addition of tin nanoparticles to a silicon-based anode provides dramatic improvements in performance in terms of both charge capacity and cycling stability. Using a simple procedure and off-the-shelf additives and precursors, we developed a structure in which the tin nanoparticles are segregated at the interface between the silicon-containing active layer and the solid electrolyte interface. Even a minor addition of tin, as small as ∼2% by weight, results in a significant decrease in the anode resistance, as confirmed by electrochemical impedance spectroscopy. This leads to a decrease in charge transfer resistance, which prevents the formation of electrically inactive “dead spots” in the anode structure and enables the effective participation of silicon in the lithiation reaction.
机译:我们已经发现,向基于硅的阳极中添加锡纳米颗粒可在充电容量和循环稳定性方面显着改善性能。使用简单的程序以及现成的添加剂和前体,我们开发了一种结构,其中锡纳米颗粒被隔离在含硅活性层和固体电解质界面之间的界面处。如电化学阻抗谱所证实的那样,即使少量添加锡,其重量也仅约2%,都会导致阳极电阻显着降低。这导致电荷转移电阻的减小,这防止了在阳极结构中形成电惰性的“死点”,并使硅有效地参与了锂化反应。

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