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首页> 外文期刊>The Journal of Chemical Physics >The energetics of tetrahydrocarbazole aromatization over Pd(111): A computational analysis
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The energetics of tetrahydrocarbazole aromatization over Pd(111): A computational analysis

机译:Pd(111)上四氢咔唑芳构化的能量学:计算分析

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The carbazole moiety is a component of many important pharmaceuticals including anticancer and anti-HIV agents and is commonly utilized in the production of modern polymeric materials with novel photophysical and electronic properties. Simple carbazoles are generally produced via the aromatization of the respective tetrahydrocarbazole (THCZ). In this work, density functional theory calculations are used to model the reaction pathway of tetrahydrocarbazole aromatization over Pd(111). The geometry of each of the intermediate surface species has been determined and how each structure interacts with the metal surface addressed. The reaction energies and barriers of each of the elementary surface reactions have also been calculated, and a detailed analysis of the energetic trends performed. Our calculations have shown that the surface intermediates remain fixed to the surface via the aromatic ring in a manner similar to that of THCZ. Moreover, the aliphatic ring becomes progressively more planer with the dissociation of each subsequent hydrogen atom. Analysis of the reaction energy profile has revealed that the trend in reaction barriers is determined by the two factors: (i) the strength of the dissociating ring-H bond and (ii) the subsequent gain in energy due to the geometric relaxation of the aliphatic ring. (c) 2008 American Institute of Physics.
机译:咔唑部分是许多重要药物(包括抗癌药和抗HIV药物)的组成部分,通常用于生产具有新颖光物理和电子性质的现代聚合材料。通常通过各自的四氢咔唑(THCZ)的芳构化来生产简单的咔唑。在这项工作中,使用密度泛函理论计算来模拟四咔唑在Pd(111)上芳构化的反应途径。已经确定了每种中间表面物质的几何形状以及每种结构如何与所处理的金属表面相互作用。还计算了每个基本表面反应的反应能和势垒,并对能量趋势进行了详细分析。我们的计算表明,表面中间体通过芳环以与THCZ相似的方式保持固定在表面上。此外,随着每个随后的氢原子的解离,脂族环逐渐变得更加平坦。对反应能谱的分析表明,反应势垒的趋势取决于两个因素:(i)离解环-H键的强度,以及(ii)由于脂肪族分子的几何弛豫而导致的随后能量增加环。 (c)2008年美国物理研究所。

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