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Adsorption of Transition Metals on Black Phosphorene: a First-Principles Study

机译:黑色磷光体对过渡金属的吸附:第一性原理研究

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摘要

Black phosphorene is a novel two-dimensional material which has unique properties and wide applications. Using first-principles calculations, we investigated the adsorption behavior of 12 different transition metals (TMs; Fe, Co, Ni, Cu, Ru, Rh, Pd, Ag, Os, Ir, Pt, and Au) on phosphorene. Our results showed that all of the adsorption systems have a large binding energy. The Fe-, Co-, and Au-phosphorene systems display magnetic states with magnetic moments of 2, 1, and 0.96 μB, respectively, which means that these systems are magnetic semiconductors. Adsorption of oxygen molecules on TM-phosphorene was also investigated. Interestingly, all the O2-(TM-phosphorene) systems, except O2-(Pd-phosphorene), can elongate the O–O bond, which is critical to their application as catalysts in the oxidation of CO. We also found that the adsorption of O2 molecules enables the O2-(Fe-, Ni-, Cu-, Ir-, Rh-, Ag-, and Au-phosphorene) systems to become magnetic semiconductors, and it allows O2-(Co-phosphorene) to display half-metallic state. Our results are expected to have important implications for phosphorene-based catalysis and spintronics.
机译:黑色磷烯是一种新颖的二维材料,具有独特的性能和广泛的应用。使用第一性原理计算,我们研究了12种不同过渡金属(TMs; Fe,Co,Ni,Cu,Ru,Rh,Pd,Ag,Os,Ir,Pt和Au)在磷上的吸附行为。我们的结果表明,所有的吸附系统都有很大的结合能。 Fe,Co和Au磷系显示的磁态磁矩分别为2、1、0.96μB,这意味着这些系统是磁性半导体。还研究了氧分子在TM-磷烯上的吸附。有趣的是,除O2-(Pd-磷烯)外,所有O2-(TM-磷烯)体系都可以延长O-O键,这对于将其作为催化剂在CO氧化中的应用至关重要。我们还发现,吸附的O2分子可以使O2-(Fe-,Ni-,Cu-,Ir-,Rh-,Ag-和Au-磷光体)系统成为磁性半导体,并且允许O2-(Co-磷光体)显示一半-金属状态。预期我们的结果将对基于磷的催化和自旋电子学产生重要影响。

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