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Reduction of Perchlorate on Rhodium and its Specificity to SurfaceCrystallographic Orientation

机译:铑上高氯酸盐的还原及其对表面结晶取向的特异性

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Catalytic properties of Rh(100), Rh(111) and polycrystalline rhodium electrodesin the process of perchlorate reduction in aqueous media have been studied. The reduction rates obtained under various conditions, as well is results of ultra-high vacuum (LEED, Auger) surface analyses of emersed Rh(100) surfaces, have provided evidence that surface chloride is the main reduction product. A temperature dependent chloride desorption has also been found via measurements of steady-state reduction currents and through chemical analysis of the electrolytic perchlorate solutions, The data demonstrate that under transient conditions, that is, when surface chloride formation determines the reaction rates the reduction current decreases in the order: Rh(100) > Rh(poly) > Rh(111) Under steady-state conditions the rate order is: Rh(100) = Rh(poly) > Rh(111) The reduction process is pH dependent and, is a prerequisite requires a contact adsorption of perchlorate on the metal sites. Prospects for using rhodium is a catalyst or catalytic additive in electrocatalysis of inorganic species are discussed.

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