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首页> 外文期刊>Molecular simulation >The base-catalyzed keto-enol tautomerism of chrysophanol anthrone. A DFT investigation of the base-catalyzed reaction
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The base-catalyzed keto-enol tautomerism of chrysophanol anthrone. A DFT investigation of the base-catalyzed reaction

机译:碱催化的克里奥 - 烯醇巨胶的甲醇蒽酮。 碱催化反应的DFT调查

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The keto-enol tautomerization of chrysophanol anthrone was systematically investigated via a series of density functional theory computations using the M06-2X/6-31 + G(d,p) level of theory. Bulk solvent effects were taken into account implicitly using the polarisable continuum model and explicitly with one pyridine molecule. Moreover, the tautomeric equilibrium was estimated by calculating the equilibrium constant. The pyridine-assisted tautomerism was found to be the energetically preferred pathway, where the pyridine acts as a proton carrier through a two-step reaction, in which the first one corresponds to the deprotonation of the chrysophanol anthrone and the second step to the protonation yielding the enol form. The results show, in accordance with experimental reports, that in the process of dissociation of the protonated pyridine and the aryloxylate anion, the ion is quite susceptible to oxidation. The highly dipolar structures of the transition states and intermediates are stabilised by pyridine up to 7.0 kcal/mol. The non-covalent interactions stabilising the transition states and the intermediates were analysed. Additionally, an intermolecular hydrogen bonding between the enol form of chrysophanol anthrone and the pyridine is formed at the last stage of the reaction. The keto-enol equilibrium analysis shows that the enol form of chrysophanol anthrone must be present in small amounts in basic solvents.
机译:通过使用M06-2X / 6-31 + G(D,P)理论水平,通过一系列密度泛函理论计算系统地研究了克里奥酮织物的keto-enol Tautomerization。用聚焦连续体模型隐含地考虑批量溶剂效应,并用一种​​吡啶分子明确地考虑。此外,通过计算平衡常数来估计互变异构平衡。发现吡啶辅助互变异物是能量优选的途径,其中吡啶通过两步反应作为质子载体,其中第一个对应于甲醇蒽酮的去质子化和第二步到质子化屈服enol形式。结果表明,根据实验报告,在质子化吡啶和芳氧基化阴离子的解离过程中,离子非常易于氧化。过渡态和中间体的高极性结构通过吡啶稳定,高达7.0kcal / mol。分析了稳定过渡状态和中间体的非共价相互作用。另外,在反应的最后阶段形成烯醇蒽酮蒽酮和吡啶之间的分子间氢键合。酮烯平衡分析表明,甲醇蒽酮的烯醇形式必须以碱性溶剂少量存在。

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