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Influence of adsorbed carbon dioxide on hydrogen electrosorption in palladium-platinum-rhodium alloys

机译:吸附的二氧化碳对钯铂铑合金中氢电吸附的影响

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Carbon dioxide electroreduction was applied to examine the processes of hydrogen electrosorption (adsorption, absorption and desorption) by thin electrodeposits of Pd-Pt-Rh alloys under conditions of cyclic voltammetric (CV) experiments. Due to different adsorption characteristics towards the adsorption product of the electroreduction of CO{sub}2 (reduced CO{sub}2) exhibited by the alloy components hydrogen adsorption and hydrogen absorption signals can be distinguished on CV curves. Reduced CO{sub}2 causes partial blocking of hydrogen adsorbed on surface Pt and Rh atoms, without any significant effect on hydrogen absorption into alloy. It reflects the fact that adsorbed hydrogen bonded to Pd atoms does not participate in CO{sub}2 reduction, while hydrogen adsorbed on Pt and Rh surface sites is inactive in the absorption reaction. In contrast, CO is adsorbed on all alloy components and causes a marked inhibition of hydrogen sorption (both adsorption and absorption)/desorption reactions.
机译:在循环伏安(CV)实验条件下,采用二氧化碳电还原法检测Pd-Pt-Rh合金薄电沉积过程中氢的电吸附过程(吸附,吸收和解吸)。由于合金成分对CO {sub} 2(还原的CO {sub} 2)的电还原的吸附产物的吸附特性不同,因此可以在CV曲线上区分出氢吸附和氢吸收信号。还原的CO {sub} 2会导致部分吸附在表面Pt和Rh原子上的氢的阻断,而对氢吸收到合金中没有任何显着影响。它反映了这样一个事实,即吸附到Pd原子上的氢不参与CO {sub} 2的还原,而吸附在Pt和Rh表面位点上的氢在吸收反应中没有活性。相反,CO吸附在所有合金成分上,并显着抑制氢吸附(吸附和吸收)/解吸反应。

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