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Computational study of simple and water-assisted tautomerism of hydroxamic acids

机译:简单和水助异羟肟酸互变异构的计算研究

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All important aspects of some simple hydroxamic acids (HAs), their tautomers and transition states in the gas phase and solvent are explored using DFr-B3LYP/6-311++G** calculations. Three tautomers as presented in Fig. I are identified for each HAs (molecules 1-8), namely the keto form (N-hydroxy amide, tautomer a), iminol form (alpha-hydroxy oxime, tautomer b) and nitroso form (alpha-nitroso alcohol, tautomer c). In all cases, the order of stability of tautomers is found to be as tautomer a > tautomer b > tautomer c. Furthermore, two transition states are found between tautomers. M (between tautomers a and b) is more stable than TS2 (between tautomers b and c). Our results confirm the available experimental data approving higher stability of the tautomer a. Because of high energy barriers between tautomers, their interconversions are very slow at room temperature. Moreover, geometry optimization of the tautomers and transition state species of molecule I and location of its reaction path have been carried out at the same level of theory in the presence of 1-3 water molecules. Activation barriers in the presence of water molecules are in general lower than those in the gas phase. This difference increases with the increase of water molecules.
机译:使用DFr-B3LYP / 6-311 ++ G **计算,探索了一些简单的异羟肟酸(HAs),其互变异构体以及在气相和溶剂中的过渡态的所有重要方面。对于每个HA(分子1-8),鉴定了三种如图I所示的互变异构体,即酮形式(N-羟基酰胺,互变异构体a),亚氨基形式(α-羟基肟,互变异构体b)和亚硝基形式(α -亚硝基醇,互变异构体c)。在所有情况下,发现互变异构体的稳定性顺序为互变异构体a>互变异构体b>互变异构体c。此外,在互变异构体之间发现两个过渡态。 M(互变异构体a和b之间)比TS2(互变异构体b和c之间)更稳定。我们的结果证实了可用的实验数据证实了互变异构体a的更高稳定性。由于互变异构体之间存在较高的能垒,因此它们的互变在室温下非常慢。此外,在1-3个水分子的存在下,以相同的理论水平对分子I的互变异构体和过渡态物种进行几何优化,并确定了其反应路径的位置。存在水分子时的活化势垒通常低于气相中的活化势垒。这种差异随着水分子的增加而增加。

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