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A density functional study of molecular oxygen adsorption and reaction barrier on Pu (100) surface

机译:Pu(100)表面上分子氧吸附和反应势垒的密度泛函研究

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Oxygen molecule adsorptions on a, Pu(100) surface have been studied in detail, using the generalized gradient approximation to density functional theory. Dissociative adsorption with a layer by layer alternate spin arrangement of the plutonium layer is found to be energetically more favorable compared to molecular adsorption. Hor2 approach on a bridge site without spin polarization was found to the highest chemisorbed site with an energy of 8.787 eV among all the cases studied. The second highest chemisorption energy of 8.236 eV, is the spin-polarized Hor2 or Ver approach at center site. Inclusion of spin polarization affects the chemisorption processes significantly, non-spin-polarized chemisorption energies being typically higher than the spin-polarized energies. We also find that the 5f electrons to be more localized in spin-polarized cases compared to the non-spin-polarized counterparts. The ionic part of O-Pu bonding plays a significant role, while the Pu 5f-O 2p hybridization was found to be rather week. Also, adsorptions of oxygen push the top of 5f hand deeper away from the Fermi level, indicating further bonding by the 5f orbitals might be less probable. Except for the interstitial sites, the work functions increase due to adsorptions of oxygen.
机译:使用对密度泛函理论的广义梯度近似,详细研究了氧分子在a,Pu(100)表面上的吸附。发现与compared吸附相比,with层的逐层交替自旋排列的解离吸附在能量上更有利。在所有研究的案例中,发现在没有自旋极化的桥位点上的Hor2方法达到化学吸附最高位点,能量为8.787 eV。第二高的化学吸附能为8.236 eV,是中心位置的自旋极化Hor2或Ver方法。包含自旋极化会显着影响化学吸附过程,非自旋极化化学吸附能量通常高于自旋极化能量。我们还发现,与非自旋极化对应物相比,在自旋极化情况下5f电子更局限。 O-Pu结合的离子部分起着重要作用,而Pu 5f-O 2p杂交被认为是相当一周的时间。同样,氧气的吸附将5f的顶部推到更远离费米能级的位置,这表明5f轨道进一步键合的可能性较小。除了间隙位置,功函数由于氧气的吸附而增加。

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