Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Phys Chem A. 2009 Mar 12;113(10):2075-85. doi: 10.1021/jp808767y.
We present a comprehensive set of results for argon, a case study in weak interactions, using the self-consistent polarization density functional theory (SCP-DFT). With minimal parametrization, SCP-DFT is found to give excellent results for the dimer interaction energy, the second virial coefficient, the liquid structure, and the lattice constant and cohesion energy of the face-centered cubic crystal compared to both accurate theoretical and experimental benchmarks. Thus, SCP-DFT holds promise as a fast, efficient, and accurate method for performing ab initio dynamics that include additional polarization and dispersion interactions for large, complex systems involving solvation and bond breaking.
我们提出了一套完整的氩的结果,这是弱相互作用的案例研究,使用自洽极化密度泛函理论(SCP-DFT)。在最小参数化的情况下,SCP-DFT 对二聚体相互作用能、第二维里系数、液体结构以及面心立方晶体的晶格常数和结合能给出了极好的结果,与准确的理论和实验基准相比都是如此。因此,SCP-DFT 有望成为一种快速、高效和准确的方法,用于进行从头动力学计算,对于涉及溶剂化和键断裂的大型复杂系统,该方法可以包括额外的极化和色散相互作用。