首页> 外文期刊>Journal of Polymer Research >Novel synthesis, DFT and investigation of the optical and electrical properties of carboxymethyl cellulose/thiobarbituric acid/copper oxide [CMC + TBA/CuO](C) nanocomposite film
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Novel synthesis, DFT and investigation of the optical and electrical properties of carboxymethyl cellulose/thiobarbituric acid/copper oxide [CMC + TBA/CuO](C) nanocomposite film

机译:羧甲基纤维素/硫纤维酸/氧化铜光学和电性能的新型合成,DFT和研究[CMC + TBA / CUO](C)纳米复合膜

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摘要

A novel synthesis blend of sodium carboxymethyl cellulose (CMC) with thiobarbituric acid (TBA) [CMC + TBA](B) has been doped with CuO to study the optical and direct electrical (DC) properties of [CMC + TBA/CuO](c) nanocomposite films. Different characterization techniques for [CMC](TF), [TBA](TF), [CMC + TBA](B) and [CMC + TBA/CuO](C) such as Fourier-transform infrared spectroscopy (FTIR), Ultraviolet-visible spectroscopy (UV-Vis), X-ray diffraction (XRD), Scanning electron microscopy (SEM) and optical properties have been used. SEM showed a good dispersion of copper oxide nanoparticles [CuO](NPs) on [CMC + TBA](B) film surface. The dielectric constant epsilon(omega), optical conductivity sigma(omega) and DC properties increased and demonstrated wave-like performance with increasing [CuO](NPs) ratio at h nu range of 0.7 eV - 5.0 eV. Copper content [CuO](NPs) increases lead to the formation of a wide variety of 3D-semiconductor networks within [CMC + TBA](B) film matrix which increase optical conductivity. The optimization was performed using density functional theory (DFT) by DMol(3) and Cambridge Serial Total Energy Package (CASTEP). In Experimental section by using Tauc's equation, the results clearly show that the values of optical energy band gap(g)(Opt) decreases from 2.978 eV for [CMC](TF), 2.725 eV for [TBA](TF), 2.625 eV for [CMC + TBA](B) to 2.488 eV for [CMC + TBA/CuO](C). The simulated FTIR, XRD, and optical properties by Gaussian software and CATSTEP are in great agreement with the experimental study. The [CMC + TBA/CuO](C) presents a good candidate for optoelectronics and solar cell applications.
机译:用硫酰脲酸钠(TBA)[CMC + TBA](CMC)(CMC + TBA](B)的新型合成共混物已经掺杂CuO以研究[CMC + TBA / CUO]的光学和直接电气(DC)性能( C)纳米复合膜。 [CMC](TF),[TBA](TF),[CMC + TBA](B)和[CMC + TBA / CUO](C)的不同表征技术,例如傅里叶变换红外光谱(FTIR),紫外线 - 已使用可见光谱(UV-VI),X射线衍射(XRD),扫描电子显微镜(SEM)和光学性质。 SEM显示铜氧化物纳米颗粒[CUO](NPS)对[CMC + TBA](B)膜表面的良好分散。介电常数ε(ω),光学导电σ(ω)和DC性质增加,并表现出波样性能,随着0.7 eV-5.0eV的H元范围的增加而增加,增加[CuO](NPS)比。铜含量[CuO](NPS)增加导致在[CMC + TBA](B)膜基质内的各种3D半导体网络的形成,这增加了光学电导率。通过DMOL(3)和剑桥串行总能量包(Castep)使用密度函数理论(DFT)进行优化。在实验部分通过使用Tauc的等式,结果清楚地表明光能带隙(G)(opt)的值从2.978eV用于[CMC](TF),2.725eV用于[TBA],2.625 EV对于[CMC + TBA / CUO](C)的[CMC + TBA](B)至2.488eV。通过高斯软件和Catstep的模拟FTIR,XRD和光学性质与实验研究非常一致。 [CMC + TBA / CUO](c)呈现出光电子和太阳能电池应用的良好候选者。

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