Protonation and deprotonation energies of uracil Implications for the uracil–water complex

M. Nguyen, A. K. Chandra
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引用次数: 71

Abstract

The proton affinities PA(B) of the four oxygen lone pairs and of the two nitrogen atoms and the deprotonation energies PA(A-) of the two NH bonds of uracil are calculated by density functional theory (DFT) using the 6-31G(d,p) and 6-31G++(d,p) basis set. The PAs are also calculated by abinitio MO theory (MP4) using 6-31G(d,p) for comparison. The DFT/B3LYP energies and the frequency shifts of the ν(OH) stretching vibrations are calculated with the 6-31++G(d,p) basis for the three cyclic structures of the uracil–water complexes. The usual correlations between energies of frequency shifts and the PAs do not hold in the case of closed structures. The most stable cyclic complex is formed at the oxygen lone pair characterized by the lowest basicity and at the NH bond characterized by the highest acidity. The energy of the complex decreases with increasing value of the difference PA(A-)-PA(B).
尿嘧啶的质子化和去质子化能对尿嘧啶-水配合物的影响
利用密度泛函理论(DFT),用6-31G(d,p)和6- 31g++ (d,p)基集计算了尿嘧啶的四个氧孤对和两个氮原子的质子亲和能PA(B)和两个氢原子的去质子能PA(A-)。为了进行比较,我们还利用6-31G(d,p),用无源MO理论(MP4)计算了PAs。用6-31++G(d,p)基计算了三种循环结构的DFT/B3LYP能量和ν(OH)伸缩振动的频移。通常的频移能量和pa之间的相关性在封闭结构中不成立。最稳定的环状配合物形成于碱度最低的氧孤对和酸度最高的氢键上。配合物的能量随PA(A-)-PA(B)差值的增大而降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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