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Spectroelectrochemical studies on the effect of cations in the alkaline glycerol oxidation reaction over carbon nanotube-supported Pd nanoparticles

机译:碳纳米管负载的钯纳米粒子上阳离子在碱性甘油氧化反应中的作用的光谱电化学研究

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摘要

The effects of the alkali cations Na+ and K+ were investigated in the alkaline electrochemical oxidation of glycerol over Pd nanoparticles (NPs) deposited on functionalized carbon nanotubes (CNTs). The electrocatalytic activity was assessed by cyclic voltammetry revealing a lower overpotential of glycerol oxidation for nitrogen-functionalized Pd/NCNTs compared with oxygen-functionalized Pd/OCNTs. Whereas significantly lower current densities were observed for Pd/OCNT in NaOH than in KOH in agreement with stronger non-covalent interactions on the Pd surface, Pd/NCNT achieved an approximately three-times higher current density in NaOH than in KOH. In situ electrochemistry/IR spectroscopy was applied to unravel the product distribution as a function of the applied potential in NaOH and KOH. The IR spectra exhibited strongly changing band patterns upon varying the potential between 0.77 and 1.17 V vs RHE: at low potentials oxidized C3 species such as mesoxalate and tartronate were formed predominantly, and with increasing potentials C2 and C1 species originating from C–C bond cleavage were identified. The tendency to produce carbonate was found to be less pronounced in KOH. The less favored formation of highly oxidized C3 species and of carbonate is deduced to be the origin of the lower current densities in the cyclic voltammograms (CVs) for Pd/NCNT in KOH. The enhanced current densities in NaOH are rationalized by the presence of Na+ ions bound to the basic nitrogen species in the NCNT support. Adsorbed Na+ ions can form complexes with the organic molecules, presumably enhanced by the chelate effect. In this way, the organic molecules are assumed to be bound more tightly to the NCNT support in close proximity to the Pd NPs facilitating their oxidation.
机译:研究了在官能化碳纳米管(CNTs)上沉积的Pd纳米颗粒(NPs)上甘油的碱性电化学氧化中,碱性阳离子Na + 和K + 的作用。通过循环伏安法评估电催化活性,发现与氧官能化的Pd / OCNT相比,氮官能化的Pd / NCNT的甘油氧化过电位低。尽管观察到NaOH中Pd / OCNT的电流密度明显低于KOH,这与Pd表面上更强的非共价相互作用相一致,但NaOH中Pd / NCNT的电流密度却比KOH高大约三倍。应用原位电化学/ IR光谱来揭示产物分布与在NaOH和KOH中施加电势的关系。在相对于RHE的0.77和1.17 V之间改变电势时,红外光谱显示出强烈变化的能带模式:在低电势下,主要形成了氧化的C3物种(如中草酸酯和酒石酸酯),并且由于C–C键断裂而引起的C2和C1物种的电势增加被确定。发现在KOH中产生碳酸盐的趋势不太明显。在KOH中,Pd / NCNT的循环伏安图(CV)中,较低的电流密度起因是高氧化C3物种和碳酸盐的不良形成。通过在NCNT载体中与碱性氮物种结合的Na + 离子的存在,可以合理地提高NaOH中的电流密度。吸附的Na + 离子可以与有机分子形成络合物,据推测可能是由于螯合作用而增强的。以此方式,假定有机分子在与Pd NP紧密接近的位置更紧密地结合到NCNT载体上,从而促进其氧化。

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