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Gold-based carbon-supported bimetallic catalysts for energy storage and biomedical applications

机译:用于储能和生物医学应用的金基碳支持的双金属催化剂

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In this study, the controlled synthesis of highly reactive gold palladium bimetallic nanostructured catalyst, using polyvinyl pyrrolidone stabiliser, has been proposed. In order to determine the morphology, biocompatibility and to explore the chemistry of the produced Au0.8Pd0.2-C samples, microscopic examinations, cell viability and Raman spectroscopy technique were performed. The XRD pattern displayed a well-defined fcc crystalline structure for the Au0.8Pd0.2-C and Pd-C catalysts. The presence of Au in Au0.8Pd0.2-C electrodes promotes a positive effect, which was confirmed by the appearance of a broad peak in the region of H-2 adsorption/desorption, suggesting that the H-2 adsorption/desorption processes on the surface of catalyst were favored. Standard mu assay performed on the Au0.8Pd0.2-C samples displayed a decreased cellular response with respect to the control group; however, cell confiuency throughout the tissue culture plate suggested biocompatibility of the given sample. Moreover, when the Au0.8Pd0.2-C catalyst was chemically tested by Raman spectroscopy, the presence of Au and Pd ions was confirmed.
机译:在该研究中,已经提出了使用聚乙烯吡咯烷酮稳定剂的对高反应性金钯双金属纳米结构催化剂的控制合成。为了确定形态,生物相容性和探索所产生的Au0.8pd0.2 -c样品的化学,进行微观检查,细胞活力和拉曼光谱技术。 XRD模式显示为Au0.8PD0.2-C和PD-C催化剂明确定义的FCC晶体结构。在Au0.8pd0.2-c电极中的存在促进了阳性效果,通过H-2吸附/解吸区域的宽峰的外观确认,这表明H-2吸附/解吸过程催化剂的表面受到青睐。在Au0.8pd0.2 -c样品上进行的标准mu测定显示对对照组的细胞响应降低;然而,在整个组织培养板上的细胞混合建议给定样品的生物相容性。另外,当通过拉曼光谱化学测试Au0.8pd0.2-c催化剂时,确认Au和Pd离子的存在。

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