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Infrared spectrometric studies of the surface basicity of metal oxides and zeolites using adsorbed probe molecules

机译:使用吸附的探针分子对金属氧化物和沸石的表面碱度进行红外光谱研究

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摘要

Infrared spectra analysis of species formed by acid probe adsorption on divided metal oxides and alkaline zeolites can lead to information on their surface basicity, particularly on the nature and strength of basic sites. Results obtained from carbon monoxide, carbon dioxide, sulfur dioxide, pyrrole, chloroform, acetonitrile, alcohols, thiols, boric acid trimethyl ether, ammonia and pyridine are critically reviewed. It is concluded that no probe can be universally used. Pyrrole in the case of alkaline zeolites, CO_2 for weakly basic metal oxides and for basic OH groups and CO for the characterization of highly basic structural defects on metal oxides activated at high temperature appear quite suitable probes. When other methods are used (TPD, microcalorimetry, volumetry, etc.) IR spectroscopy is a complementary method necessary for the knowledge of the type of sites involved; in particular, data obtained from CO_2 and SO_2 adsorption have to be carefully used since both probes can lead on highly basic metal oxides to polydentate (bulk) species which do not result from their adsorption but from their reaction with the given oxide. Ammonia and pyridine, generally used as probes for the measure of the acidity of catalysts, also adsorb on basic oxides through a dissociative chemisorption.
机译:通过酸探针吸附在分开的金属氧化物和碱性沸石上而形成的物质的红外光谱分析可以得出有关其表面碱性的信息,尤其是有关碱性位点的性质和强度的信息。严格审查了从一氧化碳,二氧化碳,二氧化硫,吡咯,氯仿,乙腈,醇,硫醇,硼酸三甲醚,氨和吡啶获得的结果。结论是没有探针可以被普遍使用。在碱性沸石的情况下,吡咯,用于弱碱性金属氧化物和碱性OH基团的CO_2和用于表征在高温下活化的金属氧化物上的高碱性结构缺陷的特征的CO似乎是非常合适的探针。当使用其他方法(TPD,微量量热法,容量法等)时,IR光谱法是了解所涉及位点类型所必需的一种补充方法。尤其是,必须谨慎使用从CO_2和SO_2吸附获得的数据,因为这两种探针都可以将高碱性金属氧化物引入多齿(大分子)物种,这不是由于它们的吸附而是由于它们与给定氧化物的反应所致。通常用作测量催化剂酸度的探针的氨和吡啶也通过解离化学吸附作用吸附在碱性氧化物上。

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