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Study on Low Temperature DC Electrical Conductivity of SnO_2 Nanomaterial Synthesized by Simple Gel Combustion Method

机译:简单凝胶燃烧法合成SnO_2纳米材料的低温直流电导率研究

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Nanocrystalline tin oxide (SnO_2) material of different particle size was synthesized using gel combustion method by varying oxidizer (HNO_3) and keeping fuel as a constant. The prepared samples were characterized by X-Ray Diffraction (XRD), Scanning Electron Microscope (SEM) and Energy Dispersive Analysis X-ray Spectroscope (EDAX). The effect of oxidizer in the gel combustion method was investigated by inspecting the particle size of nano SnO_2 powder. The particle size was found to be increases with the increase of oxidizer from 8 to 12 moles. The X-ray diffraction patterns of the calcined product showed the formation of high purity tetragonal tin (IV) oxide with the particle size in the range of 17 to 31 nm which was calculated by Scherer's formula. The particles and temperature dependence of direct (DC) electrical conductivity of SnO_2 nanomaterial was studied using Keithley source meter. The DC electrical conductivity of SnO_2 nanomaterial increases with the temperature from 80 to 300K and decrease with the particle size at constant temperature.
机译:使用凝胶燃烧方法通过改变氧化剂(HNO_3)并保持燃料作为恒定来合成不同粒度的纳米晶锡(SNO_2)材料。制备的样品以X射线衍射(XRD),扫描电子显微镜(SEM)和能量分散分析X射线分光镜(Edax)为特征。通过检测纳米SnO_2粉末的粒度研究了氧化剂在凝胶燃烧方法中的影响。发现粒度随着氧化剂的增加而增加,从8-12摩尔增加。煅烧产物的X射线衍射图案显示,通过Scherer公式计算的粒度为17至31nm的粒度的形成高纯度四元醇锡(iv)氧化物。使用Keithley源仪研究了SnO_2纳米材料的直接(DC)导电性的颗粒和温度依赖性。 SnO_2纳米材料的直流电导率随温度的增加,温度为80至300k,并在恒定温度下随粒径减小。

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