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A novel platinum-based nanocatalyst at a niobia-doped titania support for the hydrogen oxidation reaction

机译:一种新型的基于铂的纳米催化剂,该催化剂位于掺杂氧化铌的二氧化钛载体上,用于氢氧化反应

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The kinetics of the hydrogen oxidation reaction (HOR) was studied at Pt nanoparticles supported on niobia-doped titania (Pt/N-T). The catalyst support, with the composition of 0.05NbO2.5-δ-0.995TiO2 (0<δ<1), was synthesized by a modified sol-gel procedure and characterized by the BET and X-ray diffraction (XRD) techniques. The specific surface area of the support was found to be 70 m2 g-1. The XRD analysis revealed the presence of the anatase TiO2 phase in the support powder. No peaks indicating the existence of Nb-compounds were detected. Pt/N-T nanocatalyst was synthesized by the borohydride reduction method. Transmission electron microscopy revealed a quite homogenous distribution of the Pt nanoparticles over the support, with a mean particle size of about 3 nm. The electrochemical active surface area of Pt of 42±4 m2 g-1 was determined by the cyclic voltammetry technique. The kinetics of the HOR was investigated by linear sweep voltammetry at a rotating disc electrode in 0.5 mol dm-3 HClO4 solution. The determined value of the Tafel slope of 35 mV dec-1 and an exchange current density of 0.45 mA cm-2 per real surface area of the Pt are in good accordance with those already reported in the literature for the HOR at polycrystalline Pt and Pt nanocatalysts in acid solutions. This new catalyst exhibited better activity for the HOR in comparison with Pt nanocatalyst supported on Vulcan? XC-72R high area carbon.
机译:研究了在纳米比亚掺杂的二氧化钛(Pt / N-T)上负载的Pt纳米颗粒上的氢氧化反应(HOR)的动力学。通过改进的溶胶-凝胶法合成了组成为0.05NbO2.5-δ-0.995TiO2(0 <δ<1)的催化剂载体,并通过BET和X射线衍射(XRD)技术对其进行了表征。发现载体的比表面积为70m 2 g-1。 XRD分析表明载体粉末中存在锐钛矿型TiO 2相。没有检测到表明存在Nb化合物的峰。通过硼氢化物还原法合成了Pt / N-T纳米催化剂。透射电子显微镜揭示了Pt纳米颗粒在载体上的相当均匀的分布,平均粒径为约3nm。通过循环伏安法测定Pt的电化学活性表面积为42±4 m2 g-1。在0.5 mol dm-3 HClO4溶液中,通过线性扫描伏安法在旋转圆盘电极上研究了HOR的动力学。 Tafel斜率的测定值35 mV dec-1和每Pt实际表面积的交换电流密度为0.45 mA cm-2,与文献中关于多晶Pt和Pt的HOR的报道相符。酸性溶液中的纳米催化剂。与负载在Vulcan?上的Pt纳米催化剂相比,这种新催化剂对HOR表现出更好的活性。 XC-72R高面积碳。

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