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A DFT study of transition metal (Fe, Co, Ni, Cu, Ag, Au, Rh, Pd, Pt and Ir)embedded monolayer MoS2 for gas adsorption

机译:过渡金属的DFT研究(Fe,Co,Ni,Cu,Ag,Au,Rh,Pd,Pt和Ir)嵌入式单层MOS2用于气体吸附

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The structures and electronic properties of diverse transition metal (TM = Fe, Co, Ni, Cu, Ag, Au, Rh, Pd, Pt and Ir)-embedded monolayer MoS2 in the S-vacancy and the adsorption of various gas molecules (CO, NO, O-2, NO2, NH3) have been systematically investigated using density functional theory (DFT). Our results show that strong interactions between the different transition metal atoms and S defect site in monolayer MoS2 suggest that the transition metal-embedded monolayer MoS2 should be stable. The embedded transition metal atoms can effectively modulate the electronic structures and magnetic properties of inert monolayer MoS2, and drastically enhance the adsorption and the activation of CO, NO, O-2, NO2 and NH3 gas molecules, with respect to that on pristine monolayer MoS2 with weak physisorption. The electronic structure analysis reveals that introduced nd orbital impurity states of embedded transition metals in the band gap play an important role in the adsorption and effectively activation of gas molecules. In addition, obvious charge transfer occur from TM-MoS2 to oxidizing gas molecules (NO2, O-2) acting as acceptors, whereas the direction of charge transfer is reversed for the adsorption of the reducing gas (NH3) as donor. Particularly, among all transition metal elements, embedded Fe and Co have better thermal stability, adsorption properties and chemical activities for gas molecules adsorption. Our results open new perspectives for the design and the study of high active MoS2-based 2D-nanomaterials. (C) 2017 Elsevier B.V. All rights reserved.
机译:不同过渡金属的结构和电子性质(TM = Fe,Co,Ni,Cu,Ag,Au,Rh,Pd,Pt和Ir) - 在S空间和各种气体分子的吸附中的Medded单层MOS2(CO ,没有使用密度泛函理论(DFT)系统地研究了NO,O-2,NO2,NH3。我们的结果表明,单层MOS2中不同过渡金属原子和S缺陷部位之间的强相互作用表明过渡金属嵌入式单层MOS2应该是稳定的。嵌入式过渡金属原子可以有效地调节惰性单层MOS2的电子结构和磁性,并且在原始单层MOS2上大大增强了CO,NO,O-2,NO2和NH3气体分子的吸附和活化物理化弱。电子结构分析表明,引入带隙中的嵌入式过渡金属的Nd轨道杂质状态在吸附和有效地激活气体分子中起重要作用。此外,从TM-MOS2发生明显的电荷转移到氧化气体分子(NO2,O-2)作为受体,而电荷转移方向逆转,用于吸附还原气体(NH3)作为供体。特别是,在所有过渡金属元素中,嵌入式Fe和Co具有更好的热稳定性,吸附性能和用于气体分子吸附的化学活性。我们的结果开辟了基于高活性MOS2的2D纳米材料的设计和研究的新视角。 (c)2017 Elsevier B.v.保留所有权利。

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