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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Hydrogen adsorption states on silica-supported Ru-Ag and Ru-Cu bimetallic catalysts investigated via microcalorimetry
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Hydrogen adsorption states on silica-supported Ru-Ag and Ru-Cu bimetallic catalysts investigated via microcalorimetry

机译:微量热法研究二氧化硅负载Ru-Ag和Ru-Cu双金属催化剂上的氢吸附态

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摘要

The nature of hydrogen adsorption states on silica supported Ru, Ru-Ag and Ru-Cu was investigated using microcalorimetry and selective hydrogen chemisorption. The differential heats of hydrogen adsorption as a function of hydrogen coverage were determined for Ru and bimetallics with varying Ag and Cu contents. The initial heats of hydrogen adsorption (differential heat at coverages approaching zero) were found to be similar on all three catalyst systems suggesting the absence of effects that directly alter the chemisorptive bond (e.g. electron transfer between Ru and the added metal). The addition Ag to Ru significantly reduced the total amount of hydrogen adsorbed per surface Ru atom. That is, the stoichiometry of adsorption was altered by the addition of Ag even though Ag does not adsorb hydrogen. Similarly, the addition of Cu reduced the amount of hydrogen adsorbed per surface metal atom. In both cases, the reduced amount of hydrogen adsorbed per surface atom (adsorptive stoichiometry) was associated with the loss of hydrogen adsorbed from weak and intermediate energy adsorption states (<80 kJ/mol). The population of sites with adsorption energies greater than or equal to 80 kJ/mol were unaffected. From atomistic simulations it is known that, at low concentrations, Ag and Cu preferentially occupy the low coordination metal sites. The loss of the intermediate and low adsorption energy sites is correlated with replacement of Ru atoms at edge, corner and other defectlike sites by Ag and Cu. Possible reasons for this structure sensitivity are discussed. (C) 1998 Elsevier Science B.V. [References: 54]
机译:使用微量量热法和选择性氢化学吸附法研究了二氧化硅负载的Ru,Ru-Ag和Ru-Cu上氢吸附态的性质。对于Ru和具有不同Ag和Cu含量的双金属,确定了氢吸附的差热随氢覆盖率的变化。发现在所有三个催化剂体系上氢吸附的初始热量(在覆盖率附近的差热接近零)在所有三个催化剂体系上都相似,表明没有直接改变化学吸附键的作用(例如Ru与添加的金属之间的电子转移)。向Ru中添加Ag显着降低了每个表面Ru原子吸附的氢总量。即,即使Ag不吸附氢,通过添加Ag也改变吸附的化学计量。类似地,添加铜减少了每个表面金属原子吸附的氢量。在这两种情况下,每个表面原子吸附的氢减少(吸附化学计量)与弱和中能吸附状态(<80 kJ / mol)所吸附的氢损失有关。吸附能大于或等于80 kJ / mol的位点种群不受影响。从原子模拟可知,在低浓度下,Ag和Cu优先占据低配位金属位点。中间和低吸附能位的损失与在边缘,拐角和其他缺陷状位点上的Ru原子被Ag和Cu取代有关。讨论了这种结构敏感性的可能原因。 (C)1998 Elsevier Science B.V. [参考:54]

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