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Surface characterization of silver and palladium modified glassy carbon

机译:银和钯改性玻璃碳的表面表征

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In this work, the influence of silver and palladium on the surface of undoped, boron doped and phosphorus doped glassy carbon has been studied. The silver and palladium concentrations in solution, after metal deposition, were measured by atomic absorption spectrophotometer. The morphology of metal coatings was characterized by scanning electron microscopy. In order to investigate the nature and thermal stability of surface oxygen groups, temperature-programmed desorption method combined with mass spectrometric analyses, was performed. The results obtained have shown that silver and palladium spontaneously deposit from their salt solutions at the surface of glassy carbon samples. Silver deposits have dendrite structure, whilst palladium forms separate clusters. The highest amount of both silver and palladium deposits at the surface of sample containing the highest quantity of surface oxide complexes. It has been concluded that carboxyl groups and structure defects are responsible for metal reduction. Calculated desorption energies have shown that the surface modification by metal deposition leads to the formation of more stable surface of undoped and doped glassy carbon samples.
机译:在这项工作中,研究了银和钯对未掺杂,硼掺杂和磷掺杂的玻璃碳表面的影响。金属沉积后,通过原子吸收分光光度计测量溶液中银和钯的浓度。通过扫描电子显微镜对金属涂层的形貌进行表征。为了研究表面氧基团的性质和热稳定性,进行了程序升温解吸方法与质谱分析相结合的研究。所得结果表明,银和钯自盐溶液中自发沉积在玻璃碳样品的表面。银沉积物具有枝晶结构,而钯形成单独的簇。含有最大量表面氧化物配合物的样品表面上银和钯的沉积量最高。已经得出结论,羧基和结构缺陷是金属还原的原因。计算出的解吸能表明,通过金属沉积进行的表面改性导致未掺杂和掺杂的玻璃态碳样品形成更稳定的表面。

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