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An improved d-band model of the catalytic activity of magnetic transition metal surfaces

机译:磁性过渡金属表面催化活性的改进d带模型

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摘要

The d-band center model of Hammer and Nørskov is widely used in understanding and predicting catalytic activity on transition metal (TM) surfaces. Here, we demonstrate that this model is inadequate for capturing the complete catalytic activity of the magnetically polarized TM surfaces and propose its generalization. We validate the generalized model through comparison of adsorption energies of the NH3 molecule on the surfaces of 3d TMs (V, Cr, Mn, Fe, Co, Ni, Cu and Zn) determined with spin-polarized density functional theory (DFT)-based methods with the predictions of our model. Compared to the conventional d-band model, where the nature of the metal-adsorbate interaction is entirely determined through the energy and the occupation of the d-band center, we emphasize that for the surfaces with high spin polarization, the metal-adsorbate system can be stabilized through a competition of the spin-dependent metal-adsorbate interactions.
机译:Hammer和Nørskov的d带中心模型被广泛用于理解和预测过渡金属(TM)表面的催化活性。在这里,我们证明该模型不足以捕获磁极化TM表面的完整催化活性,并提出其推广。我们通过比较基于旋转极化密度泛函理论(DFT)确定的3d TMs(V,Cr,Mn,Fe,Co,Ni,Cu和Zn)表面上NH3分子的吸附能来验证通用模型预测模型的方法。与传统的d波段模型相比,传统的d波段模型完全通过能量和d波段中心的占据来确定金属-吸附剂相互作用的性质,我们强调对于自旋极化较高的表面,金属-吸附剂体系可以通过自旋依赖性金属-吸附物相互作用的竞争来稳定。

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