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Adsorption of methanol and methoxy on NiAl(110) and Ni_3Al(111): A DFT study

机译:DFT研究NiAl(110)和Ni_3Al(111)上甲醇和甲氧基的吸附

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The adsorption of methanol and methoxy on NiAl(110) and Ni_3Al(111) has been investigated using density functional theory (DFT). Optimised adsorption geometries and core level shifts are presented. On both surfaces we find that methanol binds to the Al on-top site via its oxygen atom and with the C-0 axis tilted away from the surface normal. Methoxy also shows a preference for Al-dominated sites. On NiAl(110), we predict that methoxy adsorbs with its oxygen atom in the Al-Al bridge site, while it is determined to be adsorbed with its oxygen atom in a 2Ni + Al hollow site on Ni_3Al(111), closer to Al than Ni. Surface and adsorbate induced binding energy shifts in the Al 2p states are calculated and found to be in good agreement with experimental high resolution photoelectron spectroscopy results.
机译:利用密度泛函理论(DFT)研究了甲醇和甲氧基在NiAl(110)和Ni_3Al(111)上的吸附。提出了优化的吸附几何形状和核心水平移动。在两个表面上,我们都发现甲醇通过其氧原子与Al的顶部结合,并且C-0轴倾斜远离表面法线。甲氧基也显示出对铝占优势的位点的偏爱。在NiAl(110)上,我们预测甲氧基与其氧原子一起吸附在Al-Al桥位上,而它被确定为与氧原子一起吸附在Ni_3Al(111)上靠近Al的2Ni + Al空心位点上比镍计算了表面和被吸附物在Al 2p态下引起的结合能位移,发现与实验高分辨率光电子能谱结果吻合良好。

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