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From Insulating PMMA Polymer to Conjugated Double Bond Behavior: Green Chemistry as a Novel Approach to Fabricate Small Band Gap Polymers

机译:从绝缘的PMMA聚合物到共轭双键行为:绿色化学作为制备小带隙聚合物的一种新方法

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摘要

Dye-doped polymer films of Poly(methyl methacrylate) PMMA have been prepared with the use of the conventional solution cast technique. Natural dye has been extracted from environmentally friendly material of green tea (GT) leaves. Obvious Fourier transform infrared (FTIR) spectra for the GT extract were observed, showing absorption bands at 3401 cm−1, 1628 cm−1, and 1029 cm−1, corresponding to O–H/N–H, C=O, and C–O groups, respectively. The shift and decrease in the intensity of the FTIR bands in the doped PMMA sample have been investigated to confirm the complex formation between the GT dye and PMMA polymer. Different types of electronic transition could be seen in the absorption spectra of the dye-doped samples. For the PMMA sample incorporated with 28 mL of GT dye, distinguishable intense peak around 670 nm appeared, which opens new frontiers in the green chemistry field that are particularly suitable for laser technology and optoelectronic applications. The main result of this study showed that the doping of the PMMA polymer with green tea dye exhibited a strong absorption peak around 670 nm in the visible range. The absorption edge was found to be shifted towards the lower photon energy for the doped samples. Optical dielectric loss and Tauc’s model were used to estimate the optical band gaps of the samples and to specify the transition types between the valence band (VB) and conduction band (CB), respectively. A small band gap of around 2.6 eV for the dye-doped PMMA films was observed. From the scientific and engineering viewpoints, this topic has been found to be very important and relevant. The amorphous nature of the doped samples was found and ascribed to the increase of Urbach energy. The Urbach energy has been correlated to the analysis of X-ray diffraction (XRD) to display the structure-properties relationships.
机译:聚甲基丙烯酸甲酯PMMA的染料掺杂的聚合物膜已经使用常规溶液流延技术制备。天然染料是从绿茶(GT)叶子的环保材料中提取的。观察到GT提取物的明显傅立叶变换红外(FTIR)光谱,显示在3401 cm -1 ,1628 cm -1 和1029 cm -的吸收带1 ,分别对应于O–H / N–H,C = O和C–O组。已对掺杂的PMMA样品中FTI​​R谱带强度的移动和降低进行了研究,以确认GT染料与PMMA聚合物之间形成了络合物。在掺杂染料的样品的吸收光谱中可以看到不同类型的电子跃迁。对于掺有28 mL GT染料的PMMA样品,在670 nm附近出现了明显的强峰,这在绿色化学领域开辟了新的领域,特别适用于激光技术和光电应用。这项研究的主要结果表明,用绿茶染料掺杂的PMMA聚合物在可见光范围内在670 nm附近表现出很强的吸收峰。对于掺杂样品,发现吸收边缘向较低的光子能量移动。使用光介质损耗和Tauc模型估计样品的光学带隙,并分别指定价带(VB)和导带(CB)之间的过渡类型。对于染料掺杂的PMMA膜,观察到约2.6eV的小带隙。从科学和工程的观点来看,已经发现该主题非常重要且相关。发现掺杂样品的非晶性质,并归因于Urbach能量的增加。 Urbach能量已与X射线衍射(XRD)分析相关,以显示结构-特性关系。

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