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Polarization Effects for Hydrogen-Bonded Complexes of Substituted Phenols with Water and Chloride Ion

机译:氢与水和氯离子取代的苯酚的氢键复合物的极化效应

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摘要

Variations in hydrogen-bond strengths are investigated for complexes of nine para-substituted phenols (XPhOH) with a water molecule and chloride ion. Results from ab initio HF/6-311+G(d, p) and MP2/6-311+G(d, p)//HF/6-311+G(d, p) calculations are compared with those from the OPLS-AA and OPLS/CM1A force fields. In the OPLS-AA model, the partial charges on the hydroxyl group of phenol are not affected by the choice of para substituent, while the use of CM1A charges in the OPLS/CM1A approach does provide charge redistribution. The ab initio calculations reveal a 2.0-kcal/mol range in hydrogen-bond strengths for the XPhOH⋯OH2 complexes in the order X = NO2 > CN > CF3 > Cl > F > H >OH >CH3 > NH2. The pattern is not well-reproduced with OPLS-AA, which also compresses the variation to 0.7 kcal/mol. However, the OPLS/CM1A results are in good accord with the ab initio findings for both the ordering and range, 2.3 kcal/mol. The hydrogen bonding is, of course, weaker with XPhOH as acceptor, the order for X is largely inverted, and the range is reduced to ca. 1.0 kcal/mol. The substituent effects are found to be much greater for the chloride ion complexes with a range of 11 kcal/mol. For quantitative treatment of such strong ion-molecule interactions the need for fully polarizable force fields is demonstrated.
机译:研究了九种对位取代的苯酚(XPhOH)与水分子和氯离子的配合物的氢键强度变化。从头算HF / 6-311 + G(d,p)和MP2 / 6-311 + G(d,p)// HF / 6-311 + G(d,p)的计算结果与OPLS-AA和OPLS / CM1A力场。在OPLS-AA模型中,对羟基取代基的选择不会受到对位取代基的选择的影响,而在OPLS / CM1A方法中使用CM1A电荷确实会提供电荷重新分配。从头计算表明XPhOH = OH2配合物的氢键强度在2.0 kcal / mol范围内,顺序为X = NO2> CN> CF3> Cl> F> H> OH> CH3> NH2。 OPLS-AA不能很好地再现该图案,这也将变化压缩到0.7 kcal / mol。然而,OPLS / CM1A结果与2.3 kcal / mol的有序和范围的从头算结果都非常吻合。当然,以XPhOH为受体时,氢键较弱,X的顺序被大大颠倒,其范围减小至约。 1.0 kcal / mol。发现对于11kcal / mol范围的氯离子络合物而言,取代基的作用要大得多。为了定量处理这种强烈的离子-分子相互作用,需要完全极化的力场。

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