首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Effect of Methylation on Relative Energies of Tautomers and on the Intramolecular Proton Transfer Barriers of Protonated Nitrosamine: A MR-CISD Study
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Effect of Methylation on Relative Energies of Tautomers and on the Intramolecular Proton Transfer Barriers of Protonated Nitrosamine: A MR-CISD Study

机译:甲基化对互变异构体相对能量和质子化亚硝胺分子内质子传递障碍的影响:MR-CISD研究

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MR-CISD, MR-CISD1Q, and MR-AQCC calculations have been performed on the minima and transition states (corresponding to intramolecular proton transfer between the protonation sites) of the ground state of protonated nitrosamine and N,N-dimethylnitrosamine. Our highest level results (MR-AQCC/ccpVTZ) for the smaller system indicate that protonation on the N amino (2a) is practically as favorable as the most favorable protonation on the O atom (1a). They also suggest that protonation on the nitroso N atom (2c) is similar to 14.5 kcal/mol less favorable than 1a. Results obtained at the MR-CISD1Q/cc-pVTZ level indicate that the effect of methylation on the relative energies of the tautomers is, in order of importance, 2a > 2c and increases their energies by similar to 17.5 and 4.8 kcal/mol, respectively. They also indicate that methylation alters significantly the intramolecular proton transfer barriers. The largest differences between the common geometric parameters of both systems have been found for 2a. (C) 2015 Wiley Periodicals, Inc.
机译:MR-CISD,MR-CISD1Q和MR-AQCC计算是针对质子化亚硝胺和N,N-二甲基亚硝胺基态的最小和过渡态(对应于质子化位点之间的分子内质子转移)进行的。我们针对较小系统的最高水平的结果(MR-AQCC / ccpVTZ)表明,N氨基(2a)上的质子化实际上与O原子(1a)上最有利的质子化一样好。他们还表明亚硝基N原子(2c)上的质子化比14.5 kcal / mol弱于1a。在MR-CISD1Q / cc-pVTZ水平上获得的结果表明,甲基化对互变异构体相对能量的影响按重要性顺序依次为2a> 2c,并且将其能量分别增加了约17.5和4.8 kcal / mol。 。他们还表明,甲基化显着改变了分子内质子转移壁垒。对于2a,发现两个系统的通用几何参数之间的最大差异。 (C)2015威利期刊公司

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