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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Understanding the dehydrogenation mechanism of tetrahydrocarbazole over palladium using a combined experimental and density functional theory approach
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Understanding the dehydrogenation mechanism of tetrahydrocarbazole over palladium using a combined experimental and density functional theory approach

机译:结合实验和密度泛函理论方法了解四氢咔唑在钯上的脱氢机理

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摘要

The mechanism of the dehydrogenation of tetrahydrocarbazole to carbazole over palladium has been examined for the first time. By use of a combination of deuterium exchange experiments and density functional theory calculations, a detailed reaction profile for the aromatization of tetrahydrocarbazole has been identified and validated by experiment. As with many dehydrogenation reactions, the initial hydrogen abstraction is found to have the highest reaction barrier. Tetrahydrocarbazole has four hydrogens which can, in principle, be cleaved initially; however, the theory and experiment show that the reaction is dominated by the cleavage of the carbon hydrogens at the carbon atoms in positions 1 and 4. The two pathways originating from these two C-H bond cleavage processes are found to have similar reaction energy profiles and both contribute to the overall reaction.
机译:首次研究了钯上四氢咔唑脱氢为咔唑的机理。通过结合氘交换实验和密度泛函理论计算,已确定并验证了四咔唑芳构化的详细反应曲线。与许多脱氢反应一样,发现最初的氢提取具有最高的反应势垒。四氢咔唑具有四个氢,原则上可以首先裂解。然而,理论和实验表明,该反应主要受位置1和4上碳原子处碳氢原子的裂解的影响。发现这两个CH键裂解过程中的两个途径具有相似的反应能谱,并且两者有助于整体反应。

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