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Simulation of the solid state and the first and second hydration shell of the xanthine oxidase inhibitor allopurinol: Structures obtained using DFT and MP2 methods

机译:黄嘌呤氧化酶抑制剂别嘌醇的固态及第一和第二水合壳的模拟:使用DFT和MP2方法获得的结构

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Allopurinol (AL) was investigated in the isolated state, solid state, and in the hydrated form through an exhaustive quantum-chemical analysis. Full geometry optimization and energy calculations of the 11 most stable tautomers in the isolated state were performed. The most stable one corresponds to AL-15 at all the levels of computation. Several weak bands of the experimental spectrum in Ar-matrix were tentatively assigned to tautomer AL-25. The crystal unit cell of the solid state was simulated by a heptamer form. Comparisons with the experimental values confirm that only tautomer AL-15 appears in the solid state. The hydration of the two most stable tautomers: AL-15 and AL-25 was carried out. Solvent effects were considered using the Tomasi's polarized continuum model (PCM) and by the explicit model (EM) including a variable number of water molecules surrounding the base to simulate the first and second hydration shells. In this second hydration shell the calculated difference in the free energy between both tautomers is so small, that both tautomers can coexist in bull water. Some of the most important conclusions on the effects of the hydration on the molecular structure were presented. The deformation and interaction energies were corrected for basis set superposition error (BSSE) using the counterpoise (CP) procedure. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过详尽的量子化学分析研究了别嘌呤醇(AL)的分离态,固态和水合形式。在分离状态下对11个最稳定的互变异构体进行了完整的几何优化和能量计算。在所有计算级别上,最稳定的一个对应于AL-15。互变异构体AL-25暂定了Ar矩阵中实验光谱的几个弱带。通过七聚体形式模拟固态的晶体晶胞。与实验值的比较证实仅互变异构体AL-15以固态出现。进行两种最稳定的互变异构体的水合:AL-15和AL-25。使用Tomasi的极化连续体模型(PCM)和显式模型(EM)考虑溶剂作用,显式模型包括围绕碱的数量可变的水分子,以模拟第一和第二水合壳。在第二个水合壳中,两个互变异构体之间的自由能的计算差异非常小,以至于两个互变异构体可以共存于牛水中。提出了关于水合作用对分子结构影响的一些最重要的结论。使用平衡网(CP)程序校正了基体叠加误差(BSSE)的变形和相互作用能。 (C)2016 Elsevier B.V.保留所有权利。

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