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水合嘧啶的结构、能量和振动频率位移。

Structures, energetics and vibrational frequency shifts of hydrated pyrimidine.

机构信息

Department of Chemistry and Biochemistry, University of Mississippi, University, MS 38655-1848, USA.

出版信息

Chemphyschem. 2011 Dec 9;12(17):3262-73. doi: 10.1002/cphc.201100457. Epub 2011 Oct 12.

Abstract

More than 70 unique micro-hydrated structures of pyrimidine, ranging in size from 1 to 7 water molecules, have been characterized with the B3LYP density functional and the 6-311++G(2df,2pd) triple-ζ split-valence basis set. Explicitly correlated MP2-F12 single-point computations were performed on each structure with a correlation consistent triple-ζ basis set to estimate the relative and dissociation energies at the MP2 complete basis set (CBS) limit. Many of these new structures have significantly lower energies than those previously reported (by as much as 12.66 kcal mol(-1)). For clusters with 1 and 2 water molecules, the MP2-F12 relative and dissociation energies are virtually identical to the corresponding CCSD(T)-F12 values. As the number of hydrating waters increases, the structures in which the water molecules are clustered together at one of the N atoms have lower energies than those where the water molecules are more distributed around the pyrimidine ring. Micro-hydrated structures that effectively extend the low-energy hydrogen-bonding motifs to both sides of the ring, as would be expected in the bulk phase, reproduce the experimentally observed vibrational frequency shifts of ν(1) and ν(8b) in very dilute aqueous pyrimidine solutions to within 1 cm(-1) . Micro-hydrated structures of pyrimidine in which water molecules are clustered together have lower energies than structures in which the water molecules are more evenly spread around the pyrimidine ring.

摘要

已通过 B3LYP 密度泛函和 6-311++G(2df,2pd)三重分裂价基组对嘧啶的 70 种独特的微水合结构进行了尺寸为 1 至 7 个水分子的特征描述。对每个结构都进行了带有相关一致三重-ζ基组的 MP2-F12 单点相关计算,以在 MP2 完全基组(CBS)极限下估算相对和离解能。许多新结构的能量明显低于以前报道的结构(低 12.66 kcal/mol)。对于 1 和 2 个水分子的簇,MP2-F12 相对和离解能与相应的 CCSD(T)-F12 值几乎相同。随着水合水分子数量的增加,水分子聚集在一个 N 原子上的结构的能量低于水分子在嘧啶环周围分布更均匀的结构。微水合结构有效地将低能量氢键图案扩展到环的两侧,这在体相中是预期的,将非常稀的水溶液中嘧啶的 ν(1)和 ν(8b)的实验观察到的振动频率位移以 1 cm(-1)内重现。水分子聚集在一起的嘧啶微水合结构的能量低于水分子在嘧啶环周围更均匀分布的结构。

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