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Ni-silicide growth kinetics in Si and Si/SiO_2 core/shell nanowires

机译:Si和Si / SiO_2核/壳纳米线中的硅化镍生长动力学

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摘要

A systematic study of the kinetics of axial Ni silicidation of as-grown and oxidized Si nanowires (SiNWs) with different crystallographic orientations and core diameters ranging from ~ 10 to100nm is presented. For temperatures between 300 and 440 °C the length of the total axial silicide intrusion varies with the square root of time, which provides clear evidence that the rate limiting step is diffusion of Ni through the growing silicide phase(s). A retardation of Ni-silicide formation for oxidized SiNWs is found, indicative of a stress induced lowering of the diffusion coefficients. Extrapolated growth constants indicate that the Ni flux through the silicided NW is dominated by surface diffusion, which is consistent with an inverse square root dependence of the silicide length on the NW diameter as observed for 〈111〉 orientated SiNWs. In situ TEM silicidation experiments show that NiSi _2 is the first forming phase for as-grown and oxidized SiNWs. The silicide-SiNW interface is thereby atomically abrupt and typically planar. Ni-rich silicide phases subsequently nucleate close to the Ni reservoir, which for as-grown SiNWs can lead to a complete channel break-off for prolonged silicidation due to significant volume expansion and morphological changes.
机译:提出了一种新的系统动力学方法,研究了不同晶体学取向和芯直径在〜10至100nm范围内的已生长和氧化的Si纳米线(SiNWs)的轴向Ni硅化动力学。对于300到440°C的温度,轴向硅化物侵入的总长度随时间的平方根而变化,这清楚地证明了限速步骤是Ni在整个硅化物相中扩散。发现了对于氧化的SiNWs,硅化镍形成的延迟,这表明应力引起的扩散系数的降低。外推的生长常数表明,通过硅化的NW的Ni通量主要受表面扩散的影响,这与硅化物长度对NW直径的平方根逆相关性一致,如对<111>取向的SiNWs所观察到的。原位TEM硅化实验表明,NiSi _2是生长和氧化的SiNWs的第一个形成相。因此,硅化物-SiNW界面是原子突变的并且通常是平面的。富含镍的硅化物相随后在接近镍的储层处形核,对于成年的SiNW,由于明显的体积膨胀和形态变化,可导致完整的通道断裂,从而延长硅化时间。

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