用于光电应用的 PVA/CMC/PVP/ZnMn2O4/CuCo2O4/x wt % MWCNTs 共混聚合物的光学和介电特性

Z. Heiba, A. M. El naggar, A. Kamal, G. Lakshminarayana, Mohamed Bakr Mohamed
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引用次数: 0

摘要

本研究致力于通过添加 ZnMn2O4/CuCo2O4 纳米复合材料和控制多壁碳纳米管(MWCNTs)的用量来优化聚乙烯醇(PVA)/羧甲基纤维素(CMC)/聚乙烯吡咯烷酮(PVP)共混聚合物的光学和介电参数,从而将其应用于柔性光电子学和储能电容器中。本文采用共沉淀法和水热法合成了 0.9ZnMn2O4/0.1CuCo2O4 纳米复合材料,并在 PVA/CMC/PVP 混合物中加入不同比例的多壁碳纳米管,通过溶液浇铸工艺制得薄膜。利用透射电子显微镜测定了 0.9ZnMn2O4/0.1CuCo2O4 的晶体尺寸。通过 X 射线衍射技术研究了填料和掺杂混合物的结构。利用漫反射和荧光分光光度计研究了未掺杂和掺杂混合物的光学特征。在 PVA/CMC/PVP 中加入 ZnMn2O4/CuCo2O4 后,直接和间接光带隙分别从 5.33 和 5.03 eV 下降到 5.19 和 4.66 eV。通过添加不同数量的 MWCNT,直接/间接光带隙不规则地减小,当掺杂 0.6 wt % MWCNT 时,直接/间接光带隙达到最小值(5.07,4.46)eV。含有 ZnMn2O4/CuCo2O4/0.6 wt % MWCNTs 的混合物的折射率、消光系数、光导率和非线性光学参数值最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical and Dielectric Features of PVA/CMC/PVP/ZnMn2O4/CuCo2O4/x wt % MWCNTs Blended Polymers for Optoelectronic Applications
This study is devoted to optimizing the optical and dielectric parameters of polyvinyl alcohol (PVA)/ carboxymethyl cellulose (CMC)/ polyvinylpyrrolidone (PVP) blended polymer by adding ZnMn2O4/CuCo2O4 nanocomposite and controlling the amounts of multi-walled carbon nanotubes (MWCNTs) to engage them in flexible optoelectronics and storage energy capacitors. Herein, 0.9ZnMn2O4/0.1CuCo2O4 was synthesized by co-precipitation and hydrothermal methods and loaded with different ratios of MWCNTs into PVA/CMC/PVP blend to produce films by solution casting procedure. The crystallite size of 0.9ZnMn2O4/0.1CuCo2O4 was determined using transmission electron microscopy. The structures of the filler and doped blends were explored via the x-ray diffraction technique. The optical features of undoped and doped blends were explored by diffused reflectance and fluorescence spectrophotometers. The addition of ZnMn2O4/CuCo2O4 to PVA/CMC/PVP caused a decline of direct and indirect optical band gaps from 5.33 and 5.03 eV to 5.19 and 4.66 eV, respectively. By adding different amounts of MWCNTs, the direct/indirect optical band gap reduced irregularly, and they attained their minimum values (5.07, 4.46) eV as it doped with 0.6 wt % MWCNTs. The highest values of refractive index, extinction coefficient, optical conductivity and nonlinear optical parameters were achieved in the blend containing ZnMn2O4/CuCo2O4/0.6 wt % MWCNTs.
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