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Preparation and Characterization of Pt-Ru Bimetallic Catalysts Synthesized by Electroless Deposition Methods

机译:化学沉积法合成的Pt-Ru双金属催化剂的制备与表征

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Two series of Pt@Ru/C and Ru@Pt/C bimetallic catalysts have been prepared by an electroless deposition (ED) method. For Pt@Ru/C compositions, a new ED bath was developed using Ru(NH3)(6)Cl-3 as the Ru precursor and HCOOH as the reducing agent. For Ru@Pt/C preparations, a standard bath using H2PtCl6 and DMAB as the Pt precursor and reducing agent, respectively, was employed. The Pt@Ru/C and Ru@Pt/C bimetallic catalysts have been characterized by temperature-programmed reduction (TPR), selective chemisorption, X-ray photoelectron spectroscopy (XPS), and scanning transmission electron microscopy (STEM) with X-ray energy dispersive spectroscopy (XEDS). TPR and selective chemisorption (H-2 titration of oxygen-precovered surfaces) experiments have confirmed the existence of strong surface interactions between Pt and Ru, as evidenced by hydrogen spillover of Pt to Ru (Pt-assisted reduction of oxygen precovered Ru). XPS analyses also showed e(-) transfer from Pt to Ru on the bimetallic surface, again indicating strong surface interactions between Pt and Ru. Finally, the STEM images and XEDS elemental maps provided strong visual evidence of targeted deposition of the secondary metal on the primary metal. The elemental maps confirmed that individual nanoparticles of both Pt@Ru/C and Ru@Pt/C catalysts prepared by ED were bimetallic, with excellent association between the primary and the secondary metals.
机译:通过无电沉积(ED)方法制备了两种系列的Pt @ Ru / C和Ru @ Pt / C双金属催化剂。对于Pt @ Ru / C组合物,使用Ru(NH3)(6)Cl-3作为Ru前驱体和HCOOH作为还原剂,开发了一种新的ED浴。对于Ru @ Pt / C制备,分别使用标准溶液,分别使用H2PtCl6和DMAB作为Pt前体和还原剂。 PtRu / Ct和Ru @ Pt / C双金属催化剂的特征在于程序升温还原(TPR),选择性化学吸附,X射线光电子能谱(XPS)和具有X射线的扫描透射电子显微镜(STEM)能量色散光谱法(XEDS)。 TPR和选择性化学吸附(H-2滴定富氧表面的H2滴定)实验已证实Pt和Ru之间存在强的表面相互作用,这可以通过Pt氢向Ru的氢溢出(Pt辅助还原预先富集的Ru的氧气)来证明。 XPS分析还显示,双金属表面上e(-)从Pt转移到Ru,再次表明Pt和Ru之间有很强的表面相互作用。最后,STEM图像和XEDS元素图为次级金属在初级金属上有针对性沉积提供了有力的视觉证据。元素图证实,由ED制备的Pt @ Ru / C和Ru @ Pt / C催化剂的单个纳米颗粒都是双金属的,在主要金属和次要金属之间具有良好的缔合。

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