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Silicon Nanoparticle Synthesis Using Constricted Mode Capacitive Silane Plasma

机译:收缩模电容硅烷等离子体合成硅纳米粒子

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摘要

Crystalline semiconductor nanoparticles are of interest for a variety of electronic and opto-electronic applications. We report experimental studies of the synthesis and characterization of crystalline silicon nanoparticles using a constricted-mode capacitive RF plasma in continuation of results reported earlier from an RF inductively coupled plasma. The constricted-mode discharge is based on a thermal plasma instability yielding a high-density plasma filament, which rotates at a high frequency. Silane is dissociated, leading to particle nucleation and growth. Particles are extracted by passing the particle-laden gas through an orifice to form a beam and collected by inertial impaction. We are able to reproducibly synthesize highly oriented freestanding single-crystal silicon nanoparticles. Monodisperse particle size distributions centered at a 35nm particle diameter with a geometric standard deviation of 1.3 are obtained. Transmission electron microscope (TEM) studies show uniformly shaped cubic particles. Selected-area electron diffraction patterns indicate the particles have the diamond-cubic silicon structure. To study the electrical properties of these particles, metal-semiconductor-metal structures were fabricated and analyzed.
机译:结晶半导体纳米颗粒对于各种电子和光电应用都是令人关注的。我们报告使用收缩模式电容性射频等离子体的结晶硅纳米粒子的合成和表征的实验研究,以延续先前从射频感应耦合等离子体中报告的结果。收缩模式放电基于热等离子体的不稳定性,从而产生高密度的等离子体灯丝,该灯丝以高频旋转。硅烷解离,导致颗粒成核和生长。通过将载有颗粒的气体通过孔以形成束来提取颗粒,并通过惯性碰撞收集颗粒。我们能够可再现地合成高度取向的独立式单晶硅纳米颗粒。获得了以35nm粒径为中心,几何标准偏差为1.3的单分散粒径分布。透射电子显微镜(TEM)研究显示均匀形状的立方颗粒。选定区域的电子衍射图表明颗粒具有菱形立方硅结构。为了研究这些粒子的电性能,制造并分析了金属-半导体-金属结构。

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