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Effect of precursors on structure, optical and electrical properties of chemically deposited nanocrystalline ZnO thin films

机译:前驱物对化学沉积纳米晶体ZnO薄膜的结构,光学和电学性质的影响

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摘要

Nanocrystalline ZnO thin films were chemically deposited on glass substrates using two different precursors namely, zinc sulphate and zinc nitrate. XRD studies confirm that the films are polycrystalline zinc oxide having hexagonal wurtzite structure with crystallite size in the range 25-33 nm. The surface morphology of film prepared using zinc sulphate exhibits agglomeration of small grains throughout the surface with no visible holes or faulty zones, while the film prepared using zinc nitrate shows a porous structure consisting of grains with different sizes separated by empty spaces. The film prepared using zinc sulphate shows higher reflectance due to its larger refractive index which is related to the packing density of grains in the film. Further, the film prepared using zinc sulphate is found to have normal dispersion for the wavelength range 550-750 nm, whereas the film prepared using zinc nitrate has normal dispersion for the wavelength range 450-750 nm. The direct optical band gaps in the two films are estimated to be 3.01 eV and 3.00 eV, respectively. The change in film resistance with temperature has been explained on the basis of two competing processes, viz. thermal excitation of electrons and atmospheric oxygen adsorption, occurring simultaneously. The activation energies of the films in two different regions indicate the presence of two energy levels - one deep and one shallow near the bottom of the conduction band in the bandgap.
机译:使用两种不同的前体硫酸锌和硝酸锌将纳米晶状的ZnO薄膜化学沉积在玻璃基板上。 XRD研究证实该膜是具有六方纤锌矿结构的多晶氧化锌,其微晶尺寸在25-33nm范围内。用硫酸锌制备的膜的表面形态在整个表面上呈现出小颗粒的团聚,没有可见的孔或缺陷区域,而用硝酸锌制备的膜显示出由不同尺寸的颗粒组成的多孔结构,这些颗粒被空的空间隔开。使用硫酸锌制备的膜由于其较大的折射率而显示出较高的反射率,这与膜中颗粒的堆积密度有关。此外,发现使用硫酸锌制备的膜在550-750nm的波长范围内具有正常色散,而使用硝酸锌制备的膜在450-750nm的波长范围内具有正常色散。估计两个薄膜中的直接光学带隙分别为3.01 eV和3.00 eV。膜电阻随温度的变化已根据两个相互竞争的过程进行了解释。电子的热激发和大气中的氧吸附同时发生。薄膜在两个不同区域的活化能表明在带隙的导带底部附近存在两个能级-一个深层和一个浅层。

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