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用于金属有机框架中小分子结合的第一性原理哈伯德U方法。

First-principles Hubbard U approach for small molecule binding in metal-organic frameworks.

作者信息

Mann Gregory W, Lee Kyuho, Cococcioni Matteo, Smit Berend, Neaton Jeffrey B

机构信息

Department of Chemistry, University of California, Berkeley, California 94720, USA.

Department of Chemical and Biomolecular Engineering, University of California, Berkeley, California 94720, USA.

出版信息

J Chem Phys. 2016 May 7;144(17):174104. doi: 10.1063/1.4947240.

Abstract

We apply first-principles approaches with Hubbard U corrections for calculation of small molecule binding energetics to open-shell transition metal atoms in metal-organic frameworks (MOFs). Using density functional theory with van der Waals dispersion-corrected functionals, we determine Hubbard U values ab initio through an established linear response procedure for M-MOF-74, for a number of different metal centers (M = Ti, V, Cr, Mn, Fe, Co, Ni, and Cu). While our ab initio U values differ from those used in previous work, we show that they result in lattice parameters and electronic contributions to CO2-MOF binding energies that lead to excellent agreement with experiments and previous results, yielding lattice parameters within 3%. In addition, U-dependent calculations for an example system, Co-MOF-74, suggest that the CO2 binding energy grows monotonically with the value of Hubbard U, with the binding energy shifting 4 kJ/mol (or 0.041 eV) over the range of U = 0-5.4 eV. These results provide insight into an approximate but computationally efficient means for calculation of small molecule binding energies to open-shell transition metal atoms in MOFs and suggest that the approach can be predictive with good accuracy, independent of the cations used and the availability of experimental data.

摘要

我们采用带有哈伯德U修正的第一性原理方法,来计算金属有机框架(MOF)中开壳层过渡金属原子与小分子的结合能。使用带有范德华色散校正泛函的密度泛函理论,我们通过既定的线性响应程序,针对多种不同的金属中心(M = Ti、V、Cr、Mn、Fe、Co、Ni和Cu),从头算确定M-MOF-74的哈伯德U值。虽然我们的从头算U值与先前工作中使用的值不同,但我们表明,这些值所得到的晶格参数以及对CO₂-MOF结合能的电子贡献,与实验结果和先前结果高度吻合,晶格参数的误差在3%以内。此外,对一个示例体系Co-MOF-74进行的与U相关的计算表明,CO₂结合能随哈伯德U值单调增加,在U = 0 - 5.4 eV范围内,结合能变化4 kJ/mol(或0.041 eV)。这些结果为计算MOF中开壳层过渡金属原子与小分子的结合能提供了一种近似但计算效率高的方法,并表明该方法可以进行准确预测,与所使用的阳离子以及实验数据的可用性无关。

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