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Reducing the Crystallite Size of Spherulites in PEO-Based Polymer Nanocomposites Mediated by Carbon Nanodots and Ag Nanoparticles

机译:减少碳纳米点和银纳米粒子介导的PEO基聚合物纳米复合物中球晶的微晶尺寸

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摘要

The PEO-based polymer nanocomposites were prepared by solution cast method. Green approaches were used for synthesis of carbon nanodots (CNDs) and silver nanoparticles (Ag NPs). It was found that the crystallite size of spherulites of PEO was greatly scarified upon incorporation of CNDs and Ag NPs. In the present work, in opposition to other studies, broadening of surface plasmon resonance (SPR) peak of metallic Ag NPs in PEO-based polymer composites was observed rather than peak tuning. Various techniques, such as powder X-ray diffraction (XRD), SEM, UV–Vis spectroscopy, and photoluminescence (PL), were used to characterize the structural, morphological, and optical properties of the samples. Increase of amorphous phase for the PEO doped with CND particles was shown from the results of XRD analyses. Upon the addition of suspended Ag NPs to the PEO:CNDs composites, significant change of XRD peak position was seen. A field-emission scanning electron microscope (FESEM) was used to investigate the surface morphology of the samples. In the SEM, a significant change in the crystalline structure was seen. The size of PEO spherulites in the PEO nanocomposite samples became smaller and the percentage of amorphous portion became larger, owing to the distribution of CNDs and Ag NPs. The UV–Vis absorption spectra of the PEO-based polymer were found to improve and shift to higher wavelengths upon incorporation of CNDs and Ag NPs into the PEO matrix. The SPR peak broadening in the UV–Vis spectra was observed in the PEO:CNDs composites due to the Ag NPs. The absorption edge value of PEO was found to shift toward lower photon energy as the CNDs and Ag NPs are introduced. The photoluminescence (PL) spectra were also observed for the PEO:CNDs and PEO:CNDs:Ag samples and found to be more intense in the PEO:CNDs system than in the PEO:CNDs:Ag system. Lastly, the optical band gap of the samples was further studied in detail using of Tauc’s model and optical dielectric loss parameter. The types of electron transition were specified.
机译:通过溶液流延法制备PEO基聚合物纳米复合材料。绿色方法用于合成碳纳米点(CND)和银纳米颗粒(Ag NP)。发现在掺入CNDs和Ag NPs时,PEO的球晶的晶粒尺寸大大减小。在目前的工作中,与其他研究相反,在PEO基聚合物复合材料中观察到金属Ag NPs的表面等离振子共振(SPR)峰变宽,而不是峰调谐。各种技术(例如粉末X射线衍射(XRD),SEM,UV-Vis光谱和光致发光(PL))用于表征样品的结构,形态和光学特性。从XRD分析的结果可以看出,掺杂CND颗粒的PEO的非晶相增加。在PEO:CNDs复合物中添加了悬浮的Ag NP后,XRD峰位置发生了显着变化。场发射扫描电子显微镜(FESEM)用于研究样品的表面形态。在SEM中,观察到晶体结构的显着变化。由于CNDs和Ag NPs的分布,PEO纳米复合材料样品中的PEO球晶尺寸变小,非晶部分的百分比变大。发现将CND和Ag NP掺入PEO基体中后,PEO基聚合物的UV-Vis吸收光谱会改善并转移到更高的波长。由于Ag NP,在PEO:CNDs复合材料中观察到SPR峰在UV-Vis光谱中展宽。发现当引入CNDs和Ag NPs时,PEO的吸收边值向较低的光子能量转移。还观察到了PEO:CND和PEO:CNDs:Ag样品的光致发光(PL)光谱,发现在PEO:CNDs系统中比在PEO:CNDs:Ag系统中强度更高。最后,使用Tauc模型和光学介电损耗参数进一步详细研究了样品的光学带隙。规定了电子跃迁的类型。

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