首页> 外文期刊>Journal of Catalysis >How the CO molar extinction coefficient influences the quantification of active sites from CO adsorption followed by IR spectroscopy? A case study on MoS2/Al2O3 catalysts prepared with citric acid
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How the CO molar extinction coefficient influences the quantification of active sites from CO adsorption followed by IR spectroscopy? A case study on MoS2/Al2O3 catalysts prepared with citric acid

机译:一氧化碳摩尔消光系数如何影响一氧化碳吸附和红外光谱对活性部位的定量?柠檬酸制备MoS2 / Al2O3催化剂的案例研究

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Low-temperature CO adsorption followed by infrared spectroscopy is a powerful technique to quantify the active sites of sulfide and metallic catalysts. However, the site quantification is very delicate, and strongly depends on the molar extinction coefficients of CO on the adsorbing sites. This is exemplified therein on a series of MoS2/Al2O3 catalysts prepared with different amount of citric acid as chelating agent, on which multiple CO adsorption sites exist. It is demonstrated that the use of a global CO molar extinction coefficient leads to incorrect site quantification of MoS2 edge sites, which can induce misinterpretation of the role of citric acid on the MoS2 phase dispersion. Instead, using two CO molar extinction coefficients (20 +/- 3 mu mol(-1) cm for CO adsorbed on M-edge and 35 +/- 9 mu mol(-1) cm for CO adsorbed on S-edge), a clear trend of the variation of MoS2 edge site concentration with citric acid addition is obtained and the beneficial effect of citric acid on the dispersion of MoS2 phase is revealed. (C) 2015 Elsevier Inc. All rights reserved.
机译:低温CO吸附然后进行红外光谱分析是一种强大的技术,可以量化硫化物和金属催化剂的活性部位。但是,位点定量非常精细,并且强烈取决于CO在吸附位点上的摩尔消光系数。在其中以一系列以不同量的柠檬酸作为螯合剂制备的MoS2 / Al2O3催化剂为例,在其上存在多个CO吸附位点。结果表明,使用整体CO摩尔消光系数会导致MoS2边缘位点的位点定量错误,这可能会引起对柠檬酸在MoS2相分散体中的作用的误解。相反,使用两个CO消光系数(M边缘吸附的CO为20 +/- 3μmol(-1)cm,S边缘吸附的CO为35 +/- 9μmol(-1)cm),得出了添加柠檬酸后MoS2边缘位点浓度变化的明显趋势,并揭示了柠檬酸对MoS2相分散的有益作用。 (C)2015 Elsevier Inc.保留所有权利。

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