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Polymer-encapsulated metal nanoparticles: optical, structural, micro-analytical and hydrogenation studies of a composite material

机译:聚合物包封的金属纳米颗粒:复合材料的光学,结构,微观分析和氢化研究

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摘要

A single-step synthesis route is described for the preparation of a metal - polymer composite in which palladium acetate and meta-amino benzoic acid were used as the precursors for palladium nanoparticles and poly(meta-amino benzoic acid) (PABA). The palladium nanoparticles were found to be uniformly dispersed and highly stabilized throughout the macromolecule matrix. The resultant composite material was characterized by means of different techniques, such as IR and Raman spectroscopy, which provided information regarding the chemical structure of the polymer, whereas electron microscopy images yielded information regarding the morphology of the composite material and the distribution of the metal particles in the composite material. The composite material was used as a catalyst for the ethylene hydrogenation reaction and showed catalytic activity at higher temperatures. TEM studies confirmed the changed environment of the nanoparticles at these temperatures.
机译:描述了用于制备金属-聚合物复合物的单步合成路线,其中乙酸钯和间氨基苯甲酸用作钯纳米颗粒和聚(间氨基苯甲酸)(PABA)的前体。发现钯纳米颗粒在整个大分子基质中均匀分散并高度稳定。所得的复合材料通过不同的技术进行表征,例如红外光谱和拉曼光谱学,它们提供了有关聚合物化学结构的信息,而电子显微镜图像则提供了有关复合材料的形态和金属颗粒分布的信息。在复合材料中。该复合材料用作乙烯加氢反应的催化剂,并在较高温度下显示出催化活性。 TEM研究证实了在这些温度下纳米颗粒环境的变化。

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