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Revised M06 density functional for main-group and transition-metal chemistry

机译:修订的M06密度函数可用于主族和过渡金属化学

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摘要

We present a hybrid metageneralized-gradient-approximation functional, revM06, which is based on adding Hartree–Fock exchange to the revM06-L functional form. Compared with the original M06 suite of density functionals, the resulting revM06 functional has significantly improved across-the-board accuracy for both main-group and transition-metal chemistry. The revM06 functional improves on the M06-2X functional for main-group and transition-metal bond energies, atomic excitation energies, isomerization energies of large molecules, molecular structures, and both weakly and strongly correlated atomic and molecular data, and it shows a clear improvement over M06 and M06-2X for noncovalent interactions, including smoother potential curves for rare-gas dimers. The revM06 functional also predicts more accurate results than M06 and M06-2X for most of the outside-the-training-set test sets examined in this study. Therefore, the revM06 functional is well-suited for a broad range of chemical applications for both main-group and transition-metal elements.
机译:我们提出了一种混合的广义变位近似函数revM06,该函数基于在HarM-Fock交换添加到revM06-L函数形式的基础上。与原始的M06密度官能团套件相比,所得的revM06官能团显着提高了主族和过渡金属化学的整体准确性。 revM06的功能在M06-2X的功能上进行了改进,M06-2X在主键和过渡金属键能,原子激发能,大分子的异构化能,分子结构以及原子和分子数据的弱相关性和强相关性方面均表现出明显的提高非共价相互作用比M06和M06-2X有所改进,包括稀有气体二聚体的更平滑的电位曲线。对于这项研究中检验的大多数外部训练集测试集,revM06功能还可以预测比M06和M06-2X更准确的结果。因此,revM06功能非常适合于主要族和过渡金属元素的广泛化学应用。

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