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Iridium clusters supported on gamma-Al2O3: Structural characterization and catalysis of toluene hydrogenation

机译:γ-Al2O3上负载的铱簇:甲苯加氢的结构表征和催化

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Iridiun clusters were prepared on gamma-Al2O3 that had been calcined at 400 degrees C. When supported [Ir-4(CO)(12)], the precursor, was treated in H-2 at various temperatures, it was decarbonylated, with aggregation taking place to various degrees to give a family of supported clusters and aggregates with average diameters in the range of about 9 to 33 Angstrom, as determined by extended X-ray absorption fine structure (EXAFS) spectroscopy. Similarly, samples were decarbonylated in He, and the degree of aggregation of the iridium was less than in H-2 under comparable conditions. Infrared spectra show that decarbonylation of the supported [Ir-4(CO)(12)] in the presence of H-2 was not reversible and was accompanied by aggregation of the iridium; infrared spectra of CO adsorbed on the decarbonylated samples were characterized by a band at 2058 cm(-1), typical of terminal CO adsorbed on iridium particles. The gamma-Al2O3-supported iridium clusters and aggregates were used to catalyze toluene hydrogenation at 60 degrees C and 1 atm. Samples with nearly the same Ir-Ir first-shell coordination number (nearly the same dispersion) were characterized by essentially the same catalytic activity, independent of whether the decarbonylation was carried out in He or H-2. The catalytic activity for the structure-insensitive toluene hydrogenation reaction was found to increase with increasing average cluster or aggregate diameter and to be greater for iridium on the calcined gamma-Al2O3 than for iridium on uncalcined gamma-Al2O3. (C) 1998 Academic Press [References: 31]
机译:在400℃下煅烧的γ-Al2O3上制备Iridiun团簇。在负载[Ir-4(CO)(12)]的情况下,将前体在H-2中于不同温度下进行处理,使其脱羰并聚集通过扩展X射线吸收精细结构(EXAFS)光谱测定,可以进行不同程度的反应以得到一族支撑的簇和聚集体,其平均直径在约9到33埃之间。同样,在可比条件下,样品在He中脱羰,铱的聚集度小于H-2。红外光谱表明,在H-2存在下,负载的[Ir-4(CO)(12)]的脱羰作用不可逆,并伴有铱的聚集。吸附在脱羰基样品上的CO的红外光谱的特征是在2058 cm(-1)处有一条带,这是吸附在铱颗粒上的典型末端CO。 γ-Al2O3负载的铱簇和聚集体用于在60摄氏度和1个大气压下催化甲苯氢化。具有几乎相同的Ir-Ir第一壳配位数(几乎相同的分散度)的样品的特征在于基本相同的催化活性,而与脱羰反应是在He还是H-2中进行无关。发现对结构不敏感的甲苯氢化反应的催化活性随平均簇或聚集体直径的增加而增加,并且对于煅烧的γ-Al2 O 3上的铱,比未煅烧的γ-Al2 O 3上的铱,更大。 (C)1998年学术出版社[参考文献:31]

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