Spackman Peter R, Spackman Mark A, Gale Julian D
School of Molecular and Life Sciences, Curtin University, Perth, Western Australia 6845, Australia.
School of Molecular Sciences, University of Western Australia, Perth, Western Australia 6009, Australia.
IUCrJ. 2023 Nov 1;10(Pt 6):754-765. doi: 10.1107/S2052252523008941.
The calculation of intermolecular interactions in molecular crystals using model energies provides a unified route to understanding the complex interplay of driving forces in crystallization, elastic properties and more. Presented here is a new single-parameter interaction energy model (CE-1p), extending the previous CrystalExplorer energy model and calibrated using density functional theory (DFT) calculations at the ωB97M-V/def2-QZVP level over 1157 intermolecular interactions from 147 crystal structures. The new model incorporates an improved treatment of dispersion interactions and polarizabilities using the exchange-hole dipole model (XDM), along with the use of effective core potentials (ECPs), facilitating application to molecules containing elements across the periodic table (from H to Rn). This new model is validated against high-level reference data with outstanding performance, comparable to state-of-the-art DFT methods for molecular crystal lattice energies over the X23 set (mean absolute deviation 3.6 kJ mol) and for intermolecular interactions in the S66x8 benchmark set (root mean-square deviation 3.3 kJ mol). The performance of this model is further examined compared to the GFN2-xTB tight-binding model, providing recommendations for the evaluation of intermolecular interactions in molecular crystal systems.
使用模型能量计算分子晶体中的分子间相互作用,为理解结晶过程中驱动力的复杂相互作用、弹性性质等提供了一条统一的途径。本文提出了一种新的单参数相互作用能模型(CE-1p),它扩展了先前的CrystalExplorer能量模型,并在ωB97M-V/def2-QZVP水平上使用密度泛函理论(DFT)计算对来自147个晶体结构的1157种分子间相互作用进行了校准。新模型采用交换空穴偶极子模型(XDM)对色散相互作用和极化率进行了改进处理,并使用了有效核势(ECP),便于应用于包含周期表中各种元素(从H到Rn)的分子。该新模型针对高级参考数据进行了验证,性能出色,与用于X23数据集分子晶体晶格能(平均绝对偏差3.6 kJ mol)和S66x8基准集中分子间相互作用(均方根偏差3.3 kJ mol)的最先进DFT方法相当。与GFN2-xTB紧束缚模型相比,进一步检验了该模型的性能,为评估分子晶体系统中的分子间相互作用提供了建议。