Dipartimento di Chimica Strutturale e Stereochimica Inorganica, University of Milano, Via Venezian 21, 20133 Milano, Italy.
J Chem Theory Comput. 2005 Sep;1(5):834-40. doi: 10.1021/ct050091w.
Quantum chemical calculations including electron correlation and calculations with the density sums (Pixel) method have been performed on a variety of molecular dimers representing some frequently observed recognition modes in molecular condensed phases. Notwithstanding some individual fluctuations when different computational methods are used, there is a general agreement for the relative orders of magnitude. The results have been collected in a table that ranks the interaction energies and amplitudes of the energy wells for the recognition between molecular fragments, providing a quantitative guideline to assess the relative importance of hydrogen bonding, aromatic ring stacking, antiparallel arrangements of polar moieties, weak Coulombic C-H···X interactions, and dispersive interactions between nonpolar groups. Since the Pixel method naturally allows for a separation between Coulombic, dispersion, polarization, and repulsion energy contributions, their relative importance can be analyzed with respect to the chemical constitution of the interacting partners. The relevance of these results to the current ideas and methods of "crystal engineering" is discussed.
已经对各种分子二聚体进行了包括电子相关和密度求和 (Pixel) 方法在内的量子化学计算,这些二聚体代表了分子凝聚相中一些常见的识别模式。尽管使用不同的计算方法时会出现一些个别波动,但相对量级的一致性还是存在的。结果已经收集在一个表格中,对分子片段之间识别的相互作用能和能量势阱的幅度进行了排序,为评估氢键、芳环堆积、极性基团的反平行排列、弱库仑 C-H···X 相互作用以及非极性基团之间的色散相互作用的相对重要性提供了定量指导。由于 Pixel 方法自然可以将库仑力、色散、极化和排斥能贡献分开,因此可以根据相互作用伙伴的化学结构来分析它们的相对重要性。讨论了这些结果与当前“晶体工程”的思想和方法的相关性。