Scuola Normale Superiore, Piazza dei Cavalieri 7, I-56126 Pisa, Italy.
Dipartimento di Chimica "Giacomo Ciamician", Università di Bologna, Via F. Selmi 2, I-40126 Bologna, Italy.
J Chem Theory Comput. 2021 Nov 9;17(11):6974-6992. doi: 10.1021/acs.jctc.1c00869. Epub 2021 Oct 22.
A recently developed model chemistry (denoted as junChS [Alessandrini, S.; et al. 988-1006]) has been extended to the employment of explicitly correlated (F12) methods. This led us to propose a family of effective, reliable, and parameter-free schemes for the computation of accurate interaction energies of molecular complexes ruled by noncovalent interactions. A thorough benchmark based on a wide range of interactions showed that the so-called junChS-F12 model, which employs cost-effective revDSD-PBEP86-D3(BJ) reference geometries, has an improved performance with respect to its conventional counterpart and outperforms well-known model chemistries. Without employing any empirical parameter and at an affordable computational cost, junChS-F12 reaches subchemical accuracy. Accurate characterizations of molecular complexes are usually limited to energetics. To take a step forward, the conventional and F12 composite schemes developed for interaction energies have been extended to structural determinations. A benchmark study demonstrated that the most effective option is to add MP2-F12 core-valence correlation corrections to fc-CCSD(T)-F12/jun-cc-pVTZ geometries without the need of recovering the basis set superposition error and the extrapolation to the complete basis set.
最近开发的一种模型化学(表示为 junChS [Alessandrini, S.; et al. 988-1006])已扩展到显式相关(F12)方法的应用。这使我们提出了一系列有效、可靠且无参数的方案,用于计算由非共价相互作用支配的分子复合物的精确相互作用能。广泛的相互作用基准测试表明,所谓的 junChS-F12 模型,它采用具有成本效益的 revDSD-PBEP86-D3(BJ)参考几何形状,相对于其常规对应物具有改进的性能,并优于知名的模型化学。无需使用任何经验参数且计算成本合理,junChS-F12 即可达到亚化学精度。通常,分子复合物的精确表征仅限于能量学。为了更进一步,已经将针对相互作用能开发的常规和 F12 复合方案扩展到结构测定中。基准研究表明,最有效的选择是向 fc-CCSD(T)-F12/jun-cc-pVTZ 几何形状添加 MP2-F12 核价相关校正,而无需恢复基组叠加误差和完全基组外推。