Structural, linear/non-linear optical, and optoelectrical properties of PVB/Bi2WO6 nanocomposite for industrial applications

IF 3.6 4区 材料科学 Q2 MATERIALS SCIENCE, COMPOSITES Journal of Thermoplastic Composite Materials Pub Date : 2024-05-18 DOI:10.1177/08927057241254985
Mohammed O. Alziyadi, Asma Alkabsh, Basmat Amal M. Said, Mustafa S. Shalaby
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Abstract

Nanocomposite films composed of polyvinyl butyral (PVB) and Bi2WO6 were produced through solution casting. The goal of this investigation was to examine the effects of different Bi2WO6 concentrations (0%, 2%, and 4% wt.) on the linear/non-linear optical and optoelectrical properties, as well as the structure and dispersion of films of PVB/Bi2WO6 nanocomposite. The direct band gap Eg1 value falls from 5.1 eV to 3.83 eV with the progressive increase in Bi2WO6 content from 0% to 4% wt., while indirect band gap Eg2 decreased from 4.1 eV to 2.89 eV. Conversely, the PVB + 4% Bi2WO6 nanocomposite increased Urbach’s energy (EU) from 1.00 eV for pure PVB to 1.97 eV. Moreover, our research has documented the impact of different concentrations of Bi2WO6 on a range of optical properties, including the refractive index ( n), extinction coefficient ( k), and other pertinent parameters. Utilizing the real and imaginary components of the dielectric constants εr and εi, an investigation was carried out into the dielectrics’ behavior and the optoelectrical parameters’ calculation. Furthermore, investigations were performed on the linear optical susceptibility, the non-linear refractive index, and the third-order non-linear optical susceptibility concerning the concentrations of Bi2WO6. In addition, the results indicated that varying Bi2WO6 concentrations substantially affect the oscillator strength, average oscillator wavelength, and optical conductivity. The nanocomposite films of PVB/Bi2WO6 concentrations exhibited favorable associations between their optoelectrical and non-linear/linear optical parameters, rendering them viable candidates for implementation in flexible electronic devices and radiation shielding.
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用于工业应用的 PVB/Bi2WO6 纳米复合材料的结构、线性/非线性光学和光电特性
聚乙烯醇缩丁醛(PVB)和 Bi2WO6 的纳米复合薄膜是通过溶液浇铸法生产的。本研究的目的是考察不同的 Bi2WO6 浓度(0%、2% 和 4%)对 PVB/Bi2WO6 纳米复合薄膜的线性/非线性光学和光电特性以及结构和分散性的影响。随着 Bi2WO6 含量从 0% 逐步增加到 4%,直接带隙 Eg1 值从 5.1 eV 下降到 3.83 eV,而间接带隙 Eg2 从 4.1 eV 下降到 2.89 eV。相反,PVB + 4% Bi2WO6 纳米复合材料的厄巴赫能(EU)从纯 PVB 的 1.00 eV 提高到 1.97 eV。此外,我们的研究还记录了不同浓度的 Bi2WO6 对一系列光学特性的影响,包括折射率(n)、消光系数(k)和其他相关参数。利用介电常数 εr 和 εi 的实部和虚部,对介电行为和光电参数的计算进行了研究。此外,还研究了与 Bi2WO6 浓度有关的线性光感应强度、非线性折射率和三阶非线性光感应强度。此外,研究结果表明,不同浓度的 Bi2WO6 会对振荡器强度、平均振荡器波长和光导率产生重大影响。PVB/Bi2WO6浓度的纳米复合薄膜在光电参数和非线性/线性光学参数之间表现出良好的关联性,使其成为柔性电子设备和辐射屏蔽的可行候选材料。
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来源期刊
Journal of Thermoplastic Composite Materials
Journal of Thermoplastic Composite Materials 工程技术-材料科学:复合
CiteScore
8.00
自引率
18.20%
发文量
104
审稿时长
5.9 months
期刊介绍: The Journal of Thermoplastic Composite Materials is a fully peer-reviewed international journal that publishes original research and review articles on polymers, nanocomposites, and particulate-, discontinuous-, and continuous-fiber-reinforced materials in the areas of processing, materials science, mechanics, durability, design, non destructive evaluation and manufacturing science. This journal is a member of the Committee on Publication Ethics (COPE).
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