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Functionally graded nanocrystalline silicon powders by mechanical alloying

机译:通过机械合金化功能分级的纳米晶硅粉

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Functionally graded nanocrystalline silicon powder, having varied bandgap. has been prepared using mechanical alloying technique. The solar grade (99.999% pure) nanocrystalline silicon (nc-Si) powder was ball milled in argon atmosphere in an attrition mill for 4 h to 20 h (4 h, 12 h and 20 h) to reduce crystallite size in it. The milled powder samples were then degassed, to remove entrapped gases, in a vacuum of 10(-2) torr at 200 degrees C for 1 h. Transmission electron microscopy and X-ray diffraction studies show the crystallite size of all the powders are in the nanometer range and decrease in crystallite size was seen with increasing milling time. Raman spectroscopy shows nanocrystalline phases in the milled powder particles with 100% crystalline volume fraction. UV-Vis-IR spectroscopy was used to determine bandgap of the powder samples using Tauc formula. The bandgap and crystallite size in silicon powder is found to be the function of milling duration, without addition of any alloying element. The nc-Si powder with different bandgaps may find potential applications in the field of functionally graded solar cells. (C) 2017 Elsevier B.V. All rights reserved.
机译:具有不同带隙的功能梯度纳米晶硅粉。已经使用机械合金化技术制备。将太阳能级(纯度为99.999%)纳米晶体硅(nc-Si)粉末在氩气气氛中的减磨机中球磨4至20小时(4小时,12小时和20小时)以减小其中的微晶尺寸。然后将研磨后的粉末样品在10(-2)托的真空中于200摄氏度下脱气以除去残留的气体1小时。透射电子显微镜和X射线衍射研究表明,所有粉末的微晶尺寸都在纳米范围内,并且随着研磨时间的增加,微晶尺寸减小。拉曼光谱法显示研磨的粉末颗粒中的纳米晶相具有100%的晶体体积分数。使用Tauc公式,使用UV-Vis-IR光谱法确定粉末样品的带隙。发现硅粉中的带隙和微晶尺寸是研磨持续时间的函数,而无需添加任何合金元素。带隙不同的nc-Si粉末可能在功能梯度太阳能电池领域中找到潜在的应用。 (C)2017 Elsevier B.V.保留所有权利。

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