Alsaad Ahmad M, Ahmad Ahmad A, Qattan Issam A, El-Ali Abdul-Raouf, Fawares Shatha A Al, Al-Bataineh Qais M
Department of Physical Sciences, Jordan University of Science & Technology, P.O. Box 3030, Irbid 22110, Jordan.
Department of Physics, Khalifa University of Science and Technology, Abu Dhabi 127788, United Arab Emirates.
Polymers (Basel). 2021 May 24;13(11):1715. doi: 10.3390/polym13111715.
We report the synthesis and comprehensive characterization of polymethylmethacrylate (PMMA)/polyvinylalcohol (PVA) polymeric blend doped with different concentrations of Copper oxide (CuO) nanoparticles (NPs). The PMMA-PVA/CuO nanocomposite hybrid thin films containing wt.% = 0%, 2%, 4%, 8%, and 16% of CuO NPs are deposited on glass substrates via dip-coating technique. Key optical parameters are measured, analyzed, and interpreted. Tauc, Urbach, Spitzer-Fan, and Drude models are employed to calculate the optical bandgap energy () and the optoelectronic parameters of PMMA-PVA/CuO nanocomposites. The refractive index and of undoped PMMA-PVA are found to be (1.5-1.85) and 4.101 eV, respectively. Incorporation of specific concentrations of CuO NPs into PMMA-PVA blend leads to a considerable decrease in and to an increase of the refractive index. Moreover, Fourier Transform Infrared Spectroscopy (FTIR) transmittance spectra are measured and analyzed for undoped and doped polymeric thin films to pinpoint the major vibrational modes in the spectral range (500 and 4000 cm) as well as to elucidate the nature of chemical network bonding. Thermogravimetric analysis (TGA) is conducted under appropriate conditions to ensure the thermal stability of thin films. Doped polymeric thin films are found to be thermally stable below 105 °C. Therefore, controlled tuning of optoelectronic and thermal properties of doped polymeric thin films by introducing an appropriate concentration of inorganic fillers leads to a smart design of scaled multifunctional devices.
我们报道了掺杂不同浓度氧化铜(CuO)纳米颗粒(NPs)的聚甲基丙烯酸甲酯(PMMA)/聚乙烯醇(PVA)聚合物共混物的合成及全面表征。通过浸涂技术将含有重量百分比分别为0%、2%、4%、8%和16% CuO NPs的PMMA - PVA/CuO纳米复合杂化薄膜沉积在玻璃基板上。对关键光学参数进行了测量、分析和解释。采用陶克(Tauc)、乌尔巴赫(Urbach)、斯皮策 - 范(Spitzer - Fan)和德鲁德(Drude)模型来计算PMMA - PVA/CuO纳米复合材料的光学带隙能量()和光电参数。发现未掺杂的PMMA - PVA的折射率和分别为(1.5 - 1.85)和4.101 eV。将特定浓度的CuO NPs掺入PMMA - PVA共混物中会导致显著降低,并使折射率增加。此外,对未掺杂和掺杂的聚合物薄膜测量并分析了傅里叶变换红外光谱(FTIR)透射光谱,以确定光谱范围(500和4000 cm)内的主要振动模式,并阐明化学网络键合的性质。在适当条件下进行热重分析(TGA)以确保薄膜的热稳定性。发现掺杂的聚合物薄膜在105°C以下具有热稳定性。因此,通过引入适当浓度的无机填料来可控地调节掺杂聚合物薄膜的光电和热性能,可实现对多功能器件的智能设计。