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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Hydrogen Spillover on Carbon-Supported Metal Catalysts Studied by Inelastic Neutron Scattering. Surface Vibrational States nd Hydrogen Riding Modes
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Hydrogen Spillover on Carbon-Supported Metal Catalysts Studied by Inelastic Neutron Scattering. Surface Vibrational States nd Hydrogen Riding Modes

机译:用非弹性中子散射研究碳载金属催化剂上的氢溢出。表面振动态和氢骑模

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Hydrogen spillover on carbon-supported precious metal catalysts has been investigated with inelastic neutron scattering (INS) spectroscopy. The aim, which was fully realized, was to identify spillover hydrogen on the carbon support. The inelastic neutron scattering spectra of Pt/C, Ru/C, and PtRu/C fuel cell catalysts dosed with hydrogen were determined in two sets of experiments: with the catalyst in the neutron beam and, using an annular cell, with carbon in the beam and catalyst pellets at the edge of the cell excluded from the beam. The vibrational modes observed in the INS spectra were assigned with reference to the INS of a polycyclic aromatic hydrocarbon, coronene, taken as a molecular model of a graphite layer, and with the aid of computational modeling. Two forms of spillover hydrogen were identified: H at edge sites of a graphite layer (formed after ambient dissociative chemisorption of H_2), and a weakly bound layer of mobile H atoms (formed by surface diffusion of H atoms after dissociative chemisorption of H_2 at 500 K). The INS spectra exhibited characteristic riding modes of H on carbon and on Pt or Ru. In these riding modes H atoms move in phase with vibrations of the carbon and metal lattices. The lattice modes are amplified by neutron scattering from the H atoms attached to lattice atoms. Uptake of hydrogen, and spillover, was greater for the Ru containing catalysts than for the Pt/C catalyst. The INS experiments have thus directly demonstrated H spillover to the carbon support of these metal catalysts.
机译:氢在碳载贵金属催化剂上的溢出已通过非弹性中子散射(INS)光谱进行了研究。完全实现的目标是识别碳载体上的溢出氢。在两组实验中确定了掺有氢的Pt / C,Ru / C和PtRu / C燃料电池催化剂的非弹性中子散射光谱:在中子束中使用催化剂,在环形电池中,使用碳在中子束中束和位于细胞边缘的催化剂颗粒从束中排除。在INS光谱中观察到的振动模式是参考多环芳烃,可乐烯的INS并被指定为石墨层的分子模型,并借助计算模型进行分配的。确定了两种形式的溢出氢:位于石墨层边缘位置的H(在H_2进行环境离解性化学吸附后形成),以及流动的H原子的弱结合层(由H_2在500处的离解性化学吸附后H原子的表面扩散形成) K)。 INS光谱显示出H在碳以及Pt或Ru上的特征骑乘模式。在这些骑乘模式下,H原子与碳和金属晶格的振动同相移动。晶格模式通过中子散射从附着在晶格原子上的H原子放大。含Ru的催化剂比Pt / C催化剂的氢气吸收量和溢出量更大。因此,INS实验直接证明了H溢出到这些金属催化剂的碳载体上。

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