Sorensen J B, Lewin A H, Bowen J P
The Computational Center for Molecular Structure and Design, Department of Chemistry, University of Georgia, Athens, Georgia 30602, USA.
J Org Chem. 2001 Jun 15;66(12):4105-14. doi: 10.1021/jo000610h.
Ab initio calculations of cation-neutral diamine complexes have been carried out at the MP2/6-311+G** level. The geometry and energetics of the charge-reinforced hydrogen bond are analyzed with respect to the alkyl substitution of both the protonated and neutral nitrogen atoms, and these results have been used to improve the quality of the MM3(2000) force field. In addition, specialized hydrogen bond parameters optimized for MM3(2000) are presented. These parameters allow very accurate gas-phase modeling of the charge-neutral diamine environment. Molecular mechanics calculations can model effectively protonated amine-neutral amine hydrogen bonds in the gas phase and solution (continuum dielectric) through a combination of charge-dipole interactions and explicit hydrogen-bonding terms.
已在MP2/6 - 311+G**水平上对阳离子 - 中性二胺配合物进行了从头算计算。针对质子化和中性氮原子的烷基取代情况,分析了电荷增强氢键的几何结构和能量学,这些结果已用于提高MM3(2000)力场的质量。此外,还给出了针对MM3(2000)优化的专门氢键参数。这些参数能对电荷中性二胺环境进行非常精确的气相建模。分子力学计算可以通过电荷 - 偶极相互作用和明确的氢键项相结合,有效地对气相和溶液(连续介质电介质)中的质子化胺 - 中性胺氢键进行建模。