Jana Subrata, Myneni Hemanadhan, Śmiga Szymon, Constantin Lucian A, Samal Prasanjit
School of Physical Sciences, National Institute of Science Education and Research, HBNI, Bhubaneswar 752 050, India.
Science Institute and Faculty of Physical Sciences, University of Iceland, VR-III, 107 Reykjavík, Iceland.
J Chem Phys. 2021 Sep 21;155(11):114102. doi: 10.1063/5.0060538.
In the density functional theory, dispersion corrected semilocal approximations are often used to benchmark weekly interacting finite and extended systems. Here, the focus is on providing a broad overview of the performance of D3 dispersion corrected revised Tao-Mo (revTM) semilocal functionals [A. Patra et al., J. Chem. Phys. 153, 084 117 (2020)] for thermochemistry and kinetics of molecules, molecular crystals, ice polymorphs, metal-organic systems, atom/molecular adsorption on solids, water interacting with nano-materials, binding energies of layered materials, and properties of weekly and strongly bonded solids. We show that the most suitable "optimized power" function for the revTM functional needs a modification to make it suitable for properties related to the diverse nature of finite and extended systems. The present work is an extension of the previously proposed revTM+D3 method with the motivation to design and benchmark the dispersion corrected cost-effective method based on this semilocal approximation. We show that the revised revTM+D3 functional provides various general purpose molecular and solid properties with the closest to experimental findings than its predecessor. The present assessment and benchmarking can be practically useful for performing cost-effective method based simulations of various molecular and solid-state properties.
在密度泛函理论中,色散校正的半局域近似常常被用于对弱相互作用的有限和扩展体系进行基准测试。在此,重点是全面概述D3色散校正的修订陶-莫(revTM)半局域泛函[A. 帕特拉等人,《化学物理杂志》153, 084 117 (2020)]在分子、分子晶体、冰多晶型物、金属有机体系、原子/分子在固体上的吸附、水与纳米材料的相互作用、层状材料的结合能以及弱键和强键固体性质的热化学和动力学方面的性能。我们表明,revTM泛函最合适的“优化幂”函数需要进行修改,以使其适用于与有限和扩展体系的多样性质相关的性质。本工作是先前提出的revTM+D3方法的扩展,目的是基于这种半局域近似设计并基准测试色散校正的经济高效方法。我们表明,修订后的revTM+D3泛函能提供各种通用的分子和固体性质,比其前身更接近实验结果。目前的评估和基准测试对于基于经济高效方法进行各种分子和固态性质的模拟实际上可能是有用的。