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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Carbonylation and decarbonylation of gamma-Al2O3-supported hexarhodium clusters: Characterization by infrared, C-13 NMR, and extended X-ray absorption fine structure spectroscopies
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Carbonylation and decarbonylation of gamma-Al2O3-supported hexarhodium clusters: Characterization by infrared, C-13 NMR, and extended X-ray absorption fine structure spectroscopies

机译:γ-Al2O3负载的六铑簇的羰基化和脱羰基团:通过红外,C-13 NMR和扩展的X射线吸收精细结构光谱学表征

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Rh-6(CO)(16) adsorbed on gamma-Al2O3 that had been calcined at 400 degreesC was decarbonylated in steps by treatment in He at increasing temperatures. The metal frame in the supported clusters remained largely intact during the decarbonylation process as evidenced by extended X-ray absorption fine structure (EXAFS) spectroscopy. The face-bridging CO ligands were removed first when the temperature was raised to 100 degreesC and held for 2 h, as shown by infrared and C-13 NMR data. Treatment in He at 300 degreesC led to complete removal of the carbonyl ligands and the formation of supported rhodium clusters with structures modeled on the basis of EXAFS data as Rh-6 (along with some other species inferred to be cationic rhodium). These clusters were stable in He at temperatures as high as 400 degreesC. The infrared and 13C NMR data show that when the fully decarbonylated Rh6 clusters were exposed to CO at 25-200 degreesC, they were partially recarbonylated. Subsequent treatment of the partially recarbonylated clusters in He at 300 degreesC again led to complete decarbonylation. The reversibility of the carbonylation and decarbonylation is suggestive of the behavior of extended metal surfaces, and the restriction of the reversibility to only a fraction of the CO ligands that can bond to Rh-6 indicates a role of the support and a contrast in reactivity between the supported metal clusters and extended metal surfaces. [References: 26]
机译:通过在逐渐升高的温度下在He中进行处理,逐步吸附已吸附在400℃的γ-Al2O3上的Rh-6(CO)(16)。扩展的X射线吸收精细结构(EXAFS)光谱表明,在脱羰过程中,支持的簇中的金属框架基本保持完整。如红外和C-13 NMR数据所示,当温度升至100℃并保持2 h时,首先要除去桥接的CO配体。在300℃下用He进行处理导致完全除去羰基配体,并形成了具有铑结构的负载型铑簇,该结构基于EXAFS数据模拟为Rh-6(以及其他一些推测为阳离子铑的物种)。这些团簇在高达400摄氏度的温度下在He中稳定。红外和13 C NMR数据表明,当完全脱羰基的Rh6团簇在25-200℃下暴露于CO时,它们会部分被羰基化。随后在300℃下对He中部分重羰基化的簇进行处理再次导致完全脱羰。羰基化和脱羰基的可逆性暗示了延伸的金属表面的行为,并且将可逆性限制为仅能与Rh-6结合的一小部分CO配体表明了载体的作用以及两者之间反应性的对比支撑的金属簇和延伸的金属表面。 [参考:26]

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