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On the Need for Spin Polarization in Heterogeneously Catalyzed Reactions on Nonmagnetic Metallic Surfaces

机译:非磁性金属表面非均相催化反应中自旋极化的必要性

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A series of reactions including water, oxygen, hydrogen and nitric oxide dissociation and carbon monoxide or nitric oxide oxidations catalyzed by metallic surfaces have been investigated by means of periodic density functional calculations with the main aim of establishing the importance of spin polarization when the substrate is nonmagnetic. Numerical differences in the calculated total energies and bond lengths of the breaking/forming bonds corresponding to spin restricted or spin unrestricted formalisms are usually smaller than the inherent error of density functional theory based methods. Nevertheless, it is important to insist on the fact that the spin polarized solution exists and is lower in energy than the one corresponding to the spin restricted formalism, as one would expect, and from a practical point of view, results obtained without taking spin polarization into account lead to the same description of the potential energy surface.
机译:已经通过周期性密度泛函计算研究了由金属表面催化的一系列反应,包括水,氧,氢和一氧化氮的解离以及一氧化碳或一氧化氮的氧化,其主要目的是确定当基材为自旋极化时的重要性。非磁性的。对应于自旋受限或自旋非受限形式主义的断裂/形成键的计算的总能量和键长的数值差异通常小于基于密度泛函理论的方法的固有误差。然而,重要的是要坚持这样一个事实,即自旋极化溶液存在,并且其能量低于对应于自旋受限形式主义的溶液,正如人们所期望的那样,并且从实践的角度来看,无需进行自旋极化即可获得结果。考虑到导致对势能面的相同描述。

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