首页> 外文OA文献 >Density functional theory and isodesmic reaction based prediction of four stepwise protonation constants, as log KH(n), for nitrilotriacetic acid. The importance of a kind and protonated form of a reference molecule used
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Density functional theory and isodesmic reaction based prediction of four stepwise protonation constants, as log KH(n), for nitrilotriacetic acid. The importance of a kind and protonated form of a reference molecule used

机译:密度泛函理论和基于isodesmic反应的四个逐步质子化常数的预测,作为log KH(n),用于次氮基三乙酸。使用的参考分子的种类和质子化形式的重要性

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摘要

An explicit application of isodesmic reaction (a proton exchange between the studied and structurally similar reference molecule), where the free energy change of the protonation reaction in water was obtained using the free energies in solution from a single continuum model, was used to predict stepwise protonation constants of nitrilotriacetic acid. Calculations were performed at the RB3LYP/6-311+G(d,p) level of theory in conjunction with the PCM-UA0 solvation model. Five reference molecules were investigated. It has been established thatone must pay special attention to structural similarities between the studied and reference molecules and selection of a protonated form of the reference molecule. The protonation reactions in which the studied and reference molecule are involved in must be (if possible) of the same order; e.g., the first (or generally nth)protonation reaction of the reference molecule must be used to compute the first (or nth) protonation constant of the studied molecule. The lowest energy conformer must always be used. The first, second, third, and fourth computed protonation constants differed, on average, from experimental values by 3.3, 0.8, 0.2, and 0.2 log units, respectively. It appears that the charge on the reference molecule has more decisive influence on the accuracy of computed protonation constants than its structural differences when compared with the studied molecule. Results reported can be used as a guide in constructing isodesmic reactions useful for the theoretical prediction of protonation constants by use of methodology described in this work.
机译:等电反应的明确应用(研究的和结构相似的参考分子之间的质子交换),其中使用单个连续介质模型中的溶液中的自由能获得水中质子化反应的自由能变化次氮基三乙酸的质子化常数。结合PCM-UA0溶剂化模型在RB3LYP / 6-311 + G(d,p)的理论水平上进行了计算。研究了五个参考分子。已经确定必须特别注意研究分子和参考分子之间的结构相似性以及参考分子的质子化形式的选择。被研究分子和参比分子所涉及的质子化反应必须(如果可能)处于相同的顺序;例如,参考分子的第一个(或第n个)质子化反应必须用于计算所研究分子的第一个(或第n个)质子化常数。必须始终使用最低能量的整合器。第一,第二,第三和第四计算出的质子化常数与实验值的平均差异分别为3.3、0.8、0.2和0.2 log个单位。与研究的分子相比,参考分子上的电荷似乎比其结构差异对计算质子常数的准确性具有决定性的影响。报告的结果可以用作构建等渗反应的指南,该等渗反应可通过使用本工作中描述的方法对质子化常数的理论预测有用。

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