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Crystalline Evaluation of Size-Controlled Silicon and Silicon Oxide Nanoparticles Produced by Solution Plasma Discharge

机译:通过溶液等离子体放电产生的尺寸控制硅和氧化硅纳米粒子的晶体评价

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Li-ion batteries using Si particles as anode materials have attracted attention because of their extremely high theoretical capacities. However, they experience extensive volume expansion during lithiation in the process of charging, dramatically affecting the battery lifetime. To mitigate these expansion effects and improve the capacity, Si nanoparticles and occasionally SiOx particles have been effective. Therefore, the production of Si nanoparticles is necessary. For these purposes, the solution plasma discharge method was applied. We improved previous work on the plasma discharge method by adjusting the electrolyte medium conditions via controlling the pH, solution conductivity, electrolyte concentration, and voltage, successfully generating Si nanoparticles with diameters of <10 nm and SiOx particles of <50 nm in diameter. These crystalline Si and amorphous SiOx particles were characterized using microscopy and spectroscopy.
机译:由于其极高的理论能力,锂离子电池使用Si颗粒作为阳极材料引起了注意力。 然而,它们在充电过程中的锂化过程中经历了广泛的体积扩张,显着影响了电池寿命。 为了减轻这些膨胀效果并改善容量,Si纳米粒子和偶尔的SiOx颗粒是有效的。 因此,需要生产Si纳米粒子。 出于这些目的,施加溶液等离子体放电方法。 通过通过控制pH,溶液导电性,电解质浓度和电压来调节电解质介质条件,改善了预先改善了等离子体放电方法的工作,成功地产生了直径<50nm和SiOx颗粒的直径<50nm和SiOx颗粒的Si纳米颗粒。 使用显微镜和光谱表征这些结晶Si和无定形的SiOx颗粒。

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