Nagy Peter I
Center for Drug Design and Development, the University of Toledo, Toledo, OH 43606-3390, USA.
Int J Mol Sci. 2014 Oct 28;15(11):19562-633. doi: 10.3390/ijms151119562.
A hydrogen bond for a local-minimum-energy structure can be identified according to the definition of the International Union of Pure and Applied Chemistry (IUPAC recommendation 2011) or by finding a special bond critical point on the density map of the structure in the framework of the atoms-in-molecules theory. Nonetheless, a given structural conformation may be simply favored by electrostatic interactions. The present review surveys the in-solution competition of the conformations with intramolecular vs. intermolecular hydrogen bonds for different types of small organic molecules. In their most stable gas-phase structure, an intramolecular hydrogen bond is possible. In a protic solution, the intramolecular hydrogen bond may disrupt in favor of two solute-solvent intermolecular hydrogen bonds. The balance of the increased internal energy and the stabilizing effect of the solute-solvent interactions regulates the new conformer composition in the liquid phase. The review additionally considers the solvent effects on the stability of simple dimeric systems as revealed from molecular dynamics simulations or on the basis of the calculated potential of mean force curves. Finally, studies of the solvent effects on the type of the intermolecular hydrogen bond (neutral or ionic) in acid-base complexes have been surveyed.
根据国际纯粹与应用化学联合会的定义(2011年IUPAC建议),或者通过在分子中的原子理论框架下在结构的密度图上找到一个特殊的键临界点,可以识别局部最低能量结构的氢键。尽管如此,给定的结构构象可能仅仅受到静电相互作用的青睐。本综述考察了不同类型的小有机分子在溶液中分子内氢键与分子间氢键构象的竞争情况。在其最稳定的气相结构中,分子内氢键是可能存在的。在质子溶液中,分子内氢键可能会断裂,转而形成两个溶质 - 溶剂分子间氢键。内能增加与溶质 - 溶剂相互作用的稳定作用之间的平衡调节了液相中新构象体的组成。本综述还考虑了从分子动力学模拟揭示的或基于计算的平均力曲线势能对简单二聚体系统稳定性的溶剂效应。最后,综述了关于溶剂对酸碱配合物中分子间氢键类型(中性或离子性)影响的研究。