Mulliken Center for Theoretical Chemistry, Institut für Physikalische und Theoretische Chemie, University of Bonn, Beringstr. 4, Bonn D-53115, Germany.
J Comput Chem. 2013 Mar 5;34(6):451-9. doi: 10.1002/jcc.23153. Epub 2012 Oct 31.
Consistent basis sets of triple-zeta valence with polarization quality for main group elements and transition metals from row one to three have been derived for periodic quantum-chemical solid-state calculations with the crystalline-orbital program CRYSTAL. They are based on the def2-TZVP basis sets developed for molecules by the Ahlrichs group. Orbital exponents and contraction coefficients have been modified and reoptimized, to provide robust and stable self-consistant field (SCF) convergence for a wide range of different compounds. We compare results on crystal structures, cohesive energies, and solid-state reaction enthalpies with the modified basis sets, denoted as pob-TZVP, with selected standard basis sets available from the CRYSTAL basis set database. The average deviation of calculated lattice parameters obtained with a selected density functional, the hybrid method PW1PW, from experimental reference is smaller with pob-TZVP than with standard basis sets, in particular for metallic systems. The effects of basis set expansion by diffuse and polarization functions were investigated for selected systems.
CRYSTAL 程序可用于周期性量子化学固态计算,我们基于 Ahlrichs 小组为分子开发的 def2-TZVP 基组,为第一到第三过渡周期的主族元素和过渡金属推导出了一套具有极化质量的三zeta 价一致基组。我们修改并重新优化了轨道指数和收缩系数,以便为广泛的不同化合物提供稳健且稳定的自洽场(SCF)收敛。我们将使用修正基组 pob-TZVP 的晶体结构、内聚能和固态反应焓的结果与 CRYSTAL 基组数据库中提供的选定标准基组进行比较。对于所选密度泛函(混合方法 PW1PW),与实验参考值相比,用 pob-TZVP 计算得到的晶格参数的平均偏差更小,特别是对于金属体系。我们还研究了选定体系中通过弥散和极化函数扩展基组的效果。