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首页> 外文期刊>Canadian Journal of Chemistry >Theoretical investigation of solvent effect on the keto-enol tautomerization of pentane-2,4-dione and a comparison between experimental data and theoretical calculations
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Theoretical investigation of solvent effect on the keto-enol tautomerization of pentane-2,4-dione and a comparison between experimental data and theoretical calculations

机译:戊烷-2,4-二酮的酮-2,4-二酮的酮 - 烯互变化的溶剂效应的理论研究及实验数据与理论计算的比较

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摘要

The equilibrium constants of stable keto and enol forms of pentane-2,4-dione (known as acetylacetone) are estimated, using the second-order Moller-Plesset (MP2), density functional theory (B3LYP and M06-2X), composite methods (G4, G3, G3B3, CBS-QB3, and G3MP2B3), double-hybrid density functional theory (B2PLYP), and long-range corrected (LC) hybrid functional (omega B97X-D). These methods are integrated with the PCM, CPCM, and SMD models to elucidate the effect of solvent on thermodynamic parameters. The reported measured enol contents in the solutions and gas phase are utilized to benchmark the predictions of different quantum mechanical methods for the keto-enol equilibrium in acetylacetone. In this study, we calculated the enol content in 16 acetylacetone solutions and in the gas phase. Among the applied methods, the MP2 level and the B3LYP level underestimate and overestimate, respectively, the enol content of acetylacetone in the gas phase and solutions. The G3B3 and G3MP2B3 levels give reasonable agreement with the measured data. The best results obtained by calculations at the B2PLYP/6-31+G(2d,p) and CBS-QB3 levels, with mean absolute errors (MAE) relative to experiments of 2.30 and 5.45 and root mean square deviation (RMSD) errors of 0.78 and 1.66, respectively. According to our calculations, one enol and two keto forms (Ket1 and Ket2) coexist in polar solutions. The effect of solvent was more pronounced on the structure and stability of the Ket2 tautomer than others. The strength of the intramolecular hydrogen bond in the enol form of acetylacetone is almost independent of the solvent polarity.
机译:使用二阶Moller-Plesset(MP2)、密度泛函理论(B3LYP和M06-2X)、复合方法(G4、G3、G3B3、CBS-QB3和G3MP2B3)、双杂交密度泛函理论(B2PLYP)和长程修正(LC)杂交泛函(omega B97X-D),估算了戊烷-2,4-二酮(称为乙酰丙酮)的稳定酮和烯醇形式的平衡常数。这些方法与PCM、CPCM和SMD模型相结合,以阐明溶剂对热力学参数的影响。利用已报道的溶液和气相中烯醇含量的测量结果,对乙酰丙酮中酮-烯醇平衡的不同量子力学方法的预测进行了基准测试。在这项研究中,我们计算了16种乙酰丙酮溶液和气相中的烯醇含量。在应用的方法中,MP2水平和B3LYP水平分别低估和高估了气相和溶液中乙酰丙酮的烯醇含量。G3B3和G3MP2B3水平与测量数据合理一致。通过B2PLYP/6-31+G(2d,p)和CBS-QB3水平的计算获得的最佳结果,与实验相关的平均绝对误差(MAE)分别为2.30和5.45,均方根偏差(RMSD)误差分别为0.78和1.66。根据我们的计算,一种烯醇和两种酮形式(Ket1和Ket2)共存于极性溶液中。溶剂对Ket2互变异构体的结构和稳定性的影响比其他因素更显著。乙酰丙酮烯醇形式的分子内氢键的强度几乎与溶剂极性无关。

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