Zhu Andrew, Tew David P
Physical & Theoretical Chemistry Laboratory, University of Oxford, Oxford OX1 3QZ, U.K.
J Phys Chem A. 2024 Oct 3;128(39):8570-8579. doi: 10.1021/acs.jpca.4c04555. Epub 2024 Sep 18.
We extend the intrinsic atomic orbital (IAO) method for the localization of molecular orbitals to calculate well-localized generalized Wannier functions in crystals in the spirit of the Pipek-Mezey method. We furthermore present a one-shot diabatic Wannierization procedure that aligns the phases of the Bloch functions, providing immediate Wannier localization, which serves as an excellent initial guess for optimization. We test our Wannier localization implementation on a number of solid-state systems, highlighting the effectiveness of the diabatic preparation, especially for localizing core bands. Partial charges of Wannier functions generated using Bloch IAOs align well with chemical intuition, which we demonstrate through the example of the adsorption of CO on a MgO surface.
我们将用于分子轨道定域的内禀原子轨道(IAO)方法进行扩展,以便按照Pipek-Mezey方法的思路,计算晶体中定域性良好的广义Wannier函数。此外,我们提出了一种一次性非绝热Wannier化程序,该程序可对齐Bloch函数的相位,实现即时Wannier定域,这可作为优化的极佳初始猜测。我们在多个固态系统上测试了我们的Wannier定域实现,突出了非绝热制备的有效性,特别是对于定域芯带而言。使用Bloch IAO生成的Wannier函数的部分电荷与化学直觉吻合良好,我们通过CO在MgO表面吸附的例子对此进行了说明。