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Influence of Bath Temperature and Deposition Time on Topographical and Optical Properties of Nanoparticles ZnS Thin Films Synthesized by a Chemical Bath Deposition Method

机译:浴温和沉积时间对由化学浴沉积法合成的纳米颗粒ZnS薄膜的地形和光学性能的影响

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In this paper, zinc sulfide nanoparticle (ZnS-NP) thin films were deposited onto glass substrates by chemical bath deposition using zinc sulfate as the cation precursor and thiourea as the anionic precursor. Different bath temperatures (65, 70, 75, and 80°C) and different deposition times (20, 30, 40, and 50 min) were selected to study the performance of ZnS thin films. Topographical and optical characterizations of the films were studied using the atomic force microscope (AFM) and UV-Vis spectroscope. The best ZnS thin films were deposited at a bath temperature (70°C) and a deposition time (30 min) with homogeneous distribution, high density, and small average diameter (106 nm). The energy gap (E_g) was found to be in the range of 4.05-3.97 eV for the ZnS films. Optical constants (refractive index, n, extinction coefficient, k, and dielectric constant, ε) of the films were obtained in the wavelength range 300-500nm by using spectrophotometric measurement. The dispersion of the refractive index is analyzed by using a single oscillator model. The oscillator energy E_0 and dispersion energy E_d were determined using the Wemple-DiDomenico single oscillator model. Urbach's energy increases from 0.907 eV to 2.422 eV with increasing of deposition time. The calculated radius of nanoparticles using Brus equation was 1.9, 2.3, 2.45, and 2.51nm at deposition times 20, 30, 40, and 50 min, respectively.
机译:本文通过使用硫酸锌作为阴离子前体,通过化学浴沉积将硫化锌纳米颗粒(ZnS-NP)薄膜沉积在玻璃基板上。选择不同的浴温(65,70,75和80℃)和不同的沉积时间(20,30,40和50分钟)以研究ZnS薄膜的性能。使用原子力显微镜(AFM)和UV-VIS光谱研究研究膜的地形和光学表征。在浴温(70℃)和沉积时间(30分钟)下沉积最佳ZnS薄膜,具有均匀分布,高密度和小平均直径(106nm)。发现能量隙(E_G)为ZNS薄膜的4.05-3.97 eV。通过使用分光光度测量,在波长范围为300-500nm中获得膜的光学常数(折射率,N,消光系数,k和介电常数,ε)。通过使用单个振荡器模型分析折射率的分散。使用Wemple-Didomenico单振荡器模型测定振荡器能量E_0和色散能E_D。 Urbach的能量从0.907 EV增加到2.422 eV随着沉积时间的增加而增加。在沉积时间20,30,40和50分钟,使用BRUS等式的纳米颗粒的计算半径分别为1.9,2.3,2.45和2.51nm。

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