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Hydrogenated Amorphous Silicon (a-Si:H) Colloids

机译:氢化非晶硅(a-Si:H)胶体

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Colloidal particles of hydrogenated amorphous silicon (a-Si:H) were synthesized by decomposition of trisilane (Si3H8) in supercritical n-hexane (sc-hexane) at temperatures ranging from 380 to 550 °C. The reaction temperature, pressure and Si3H8 concentration have a significant influence on the average particle size, Si bond order and hydrogen content. The particle diameter could be varied from 170nm to 1.7 μm, with hydrogen loadings between 10% and 58%. Raman spectroscopy of the particles revealed significant differences in Si bond order that correlated with hydrogen content, with the lowest reaction temperatures yielding particles with the least structural order and most associated hydrogen. Particles synthesized at temperatures higher than 420 °C had sufficient bond order to allow crystallization under the Raman laser probe.
机译:氢化非晶硅(a-Si:H)的胶体颗粒是通过在380至550°C的温度下在超临界正己烷(sc-己烷)中分解三硅烷(Si3H8)来合成的。反应温度,压力和Si 3 H 8浓度对平均粒径,Si键序和氢含量具有显着影响。粒径可以在170nm至1.7μm之间变化,氢含量在10%至5​​8%之间。颗粒的拉曼光谱显示出与氢含量相关的硅键顺序显着不同,最低的反应温度产生了具有最小结构顺序和最相关氢的颗粒。在高于420°C的温度下合成的颗粒具有足够的键序,可以在拉曼激光探针下结晶。

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