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首页> 外文期刊>Journal of Materials Science >Structural and electrical conductivity studies on undoped and copper-doped nanocrystalline zinc sulphide
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Structural and electrical conductivity studies on undoped and copper-doped nanocrystalline zinc sulphide

机译:未掺杂和掺杂铜的纳米晶硫化锌的结构和电导率研究

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Zinc sulphide (ZnS) and copper-doped zinc sulphide nanocrystallites (ZnS:Cu) of average size 4 and 3 nm, respectively, have been synthesized by chemical precipitation method. Structural and morphological studies using X-ray and high resolution transmission electron microscopy (HRTEM) measurements have confirmed hexagonal structure for the samples. Using impedance spectroscopy, the effect of grain interior and grain boundary regions on the electrical conductivity have been studied at various temperatures. In the high temperature region, the grain boundary contribution to conduction is found to be larger than that of the grain interior region. Further, the activation energies of charge carriers in both the grain interior and grain boundary regions have been determined. The conduction mechanism of copper-doped zinc sulphide nanocrystallites have been studied at various temperatures and the results are reported.
机译:通过化学沉淀法分别合成了平均尺寸为4和3 nm的硫化锌(ZnS)和掺杂铜的硫化锌纳米微晶(ZnS:Cu)。使用X射线和高分辨率透射电子显微镜(HRTEM)进行的结构和形态研究已经证实了样品的六边形结构。使用阻抗谱,研究了在不同温度下晶粒内部和晶界区域对电导率的影响。在高温区域,发现晶界对导电的贡献要大于晶粒内部区域。此外,已经确定了在晶粒内部和晶粒边界区域中的电荷载流子的活化能。研究了铜掺杂的硫化锌纳米微晶在不同温度下的导电机理,并报道了结果。

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