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核碱基模拟物2-吡啶酮与氟苯的氢键作用:一项从头算研究。

Hydrogen bonding of the nucleobase mimic 2-pyridone to fluorobenzenes: an ab initio investigation.

作者信息

Frey Jann A, Leist Roman, Leutwyler Samuel

机构信息

Departement für Chemie und Biochemie, Universität Bern, Freiestrasse 3, CH-3012 Bern, Switzerland.

出版信息

J Phys Chem A. 2006 Mar 30;110(12):4188-95. doi: 10.1021/jp057101+.

DOI:10.1021/jp057101+
PMID:16553369
Abstract

The hydrogen-bonded complexes of the nucleobase mimic 2-pyridone (2PY) with seven different fluorinated benzenes (1-, 1,2-, 1,4-, 1,2,3-, 1,3,5-, 1,2,3,4-, and 1,2,4,5-fluorobenzene) are important model systems for investigating the relative importance of hydrogen bonding versus pi-stacking interactions in DNA. We have shown by supersonic-jet spectroscopy that these dimers are hydrogen bonded and not pi-stacked at low temperature (Leist, R.; Frey, J. A.; Leutwyler, S. J. Phys. Chem. A 2006, 110, 4180). Their geometries and binding energies D(e) were calculated using the resolution of identity (RI) Møller-Plesset second-order perturbation theory method (RIMP2). The most stable dimers are bound by antiparallel N-H...F-C and C-H...O=C hydrogen bonds. The binding energies are extrapolated to the complete basis set (CBS) limit, , using the aug-cc-pVXZ basis set series. The CBS binding energies range from -D(e,CBS) = 6.4-6.9 kcal/mol and the respective dissociation energies from -D(0,CBS) = 5.9-6.3 kcal/mol. In combination with experiment, the latter represent upper limits to the dissociation energies of the pi-stacked isomers (which are not observed experimentally). The individual C-H...O=C and N-H...F-C contributions to D(e) can be approximately separated. They are nearly equal for 2PY.fluorobenzene; each additional F atom strengthens the C-H...O=C hydrogen bond by approximately 0.5 kcal/mol and weakens the C-F...H-N hydrogen bond by approximately 0.3 kcal/mol. The single H-bond strengths and lengths correlate with the gas-phase acid-base properties of the C-H and C-F groups of the fluorobenzenes.

摘要

核碱基类似物2-吡啶酮(2PY)与七种不同的氟化苯(1-氟苯、1,2-二氟苯、1,4-二氟苯、1,2,3-三氟苯、1,3,5-三氟苯、1,2,3,4-四氟苯和1,2,4,5-四氟苯)形成的氢键复合物是研究DNA中氢键与π-堆积相互作用相对重要性的重要模型体系。我们通过超声速喷射光谱表明,这些二聚体在低温下是通过氢键结合而非π-堆积(莱斯特,R.;弗雷,J. A.;洛伊特维勒,S.《物理化学杂志A》2006年,110卷,4180页)。使用单位分解(RI)的莫勒-普莱塞特二阶微扰理论方法(RIMP2)计算了它们的几何结构和结合能D(e)。最稳定的二聚体通过反平行的N-H...F-C和C-H...O=C氢键结合。使用aug-cc-pVXZ基组系列将结合能外推到完全基组(CBS)极限。CBS结合能范围为-D(e,CBS)=6.4 - 6.9千卡/摩尔,相应的解离能为-D(0,CBS)=5.9 - 6.3千卡/摩尔。结合实验,后者代表了π-堆积异构体解离能的上限(实验中未观察到)。C-H...O=C和N-H...F-C对D(e)的单独贡献可以近似分离。对于2PY·氟苯,它们几乎相等;每个额外的F原子使C-H...O=C氢键强度增加约0.5千卡/摩尔,使C-F...H-N氢键强度减弱约0.3千卡/摩尔。单个氢键的强度和长度与氟苯中C-H和C-F基团的气相酸碱性质相关。

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