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Composite Si-Ni nanoparticles produced by plasma spraying physical vapor deposition for negative electrode in Li-ion batteries

机译:通过等离子体喷涂物理气相沉积在锂离子电池中的等离子体喷射物理气相沉积产生的复合Si-Ni纳米颗粒

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摘要

Si-Ni composite nanoparticles have been produced by a single and continuous plasma spray physical vapor deposition (PS-PVD) from Si and Ni powder feedstocks and their electrochemical performances as anode in lithium-ion batteries (LiB) are investigated. Si nanoparticles with 20-40 nm on which Ni is directly attached with Si/NiSi2 epitaxial interface are formed spontaneously through co-condensation of high temperature elemental gas mixtures during PS-PVD. When only a little amount of Ni is added to Si, the effect of the epitaxial Ni attachment on the Si nanoparticles becomes evident; the cycle capacity is appreciably improved to reach a 1.6 times higher capacity than that of the Si only cell after 50 cycles, due to reduced charge-transfer resistance and nanosized Si particle. In contrast, excessive Ni addition to Si feedstock leads to formation of various silicides as a result of the accelerated silicidation during PS-PVD, which results in a significant decrease in the cycle capacity due to reduction of the active Si phase amount despite reduced charge-transfer resistance.
机译:以硅和镍粉为原料,采用单次和连续等离子喷涂物理气相沉积(PS-PVD)技术制备了硅镍复合纳米颗粒,并对其作为锂离子电池负极的电化学性能进行了研究。在PS-PVD过程中,通过高温元素气体混合物的共冷凝,自发形成了20-40nm的Si纳米颗粒,镍直接附着在Si/NiSi2外延界面上。当Si中只加入少量Ni时,外延Ni对Si纳米颗粒的影响变得明显;由于电荷转移电阻降低和纳米硅颗粒,50次循环后,循环容量明显提高,达到纯硅电池容量的1.6倍。相比之下,由于PS-PVD过程中的加速硅化,向硅原料中过量添加镍会导致各种硅化物的形成,尽管电荷转移电阻降低,但由于活性硅相数量减少,循环容量显著降低。

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