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The microstructure of bimetallic Ru$z.sbnd;Cu/SiO2 catalysts: A chemisorption and analytical electron microscopy study

机译:Bimetallic Ru $ Z.SBND的微观结构; Cu / SiO2催化剂:化学吸附和分析电子显微镜研究

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摘要

Supported bimetallic Ru---Cu/SiO2 catalysts are characterized by transmission electron microscopy, energy dispersive X-ray spectroscopy, electron microdiffraction, and chemisorption. Metal particles up to 4 nm in diameter are bimetallic, while particles larger than 4 nm contain only Cu. Considerable compositional nonuniformity is observed from one individual metal particle to the next. Microdiffraction patterns obtained from individual particles can be attributed to either Ru or Cu suggesting no significant modification in crystallographic structure of either metal component. Addition of Cu to Ru results in a drastic suppression of H2 chemisorption while the extent of O2 chemisorption is not as strongly affected. The suppressed H2 chemisorption capability of Ru in the bimetallic catalysts is an indication of atomic interdispersion of Ru and Cu on the surface of the bimetallic clusters, leading to the break-up of the Ru ensembles which would be necessary for dissociation of molecular hydrogen. The influence of catalyst preparation techniques on the relative interdispersion of Ru and Cu and consequent discrepancies in the Ru---Cu literature are discussed.
机译:支持的双金属ru --- Cu / SiO 2催化剂的特征在于透射电子显微镜,能量分散X射线光谱,电子微量化和化学吸附。直径高达4nm的金属颗粒是双金属的,而大于4nm的颗粒仅含有Cu。从一个单独的金属颗粒到接下来观察到相当大的组成不均匀性。从个体颗粒获得的微量折磨图案可归因于Ru或Cu,表明无论是金属组分的晶体结构无明显修饰。加入Cu至Ru导致H 2化学的激烈抑制,同时O2的化学吸附的程度不受影响。在双金属催化剂中Ru的抑制的H2化学吸附能力是Ru和Cu在双金属簇的表面上的原子算子的指示,导致Ru集合体的分解,这对于解离分子氢来说是必要的。探讨了催化剂制备技术对Ru和Cu相对互化的影响,并进行了ru - Cu文学中的差异。

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    A SHASTRI;

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  • 年度 1986
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