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Stable GaSe-Like Phosphorus Carbide Monolayer with Tunable Electronic and Optical Properties from Ab Initio Calculations

机译:从头算算起具有可调电子和光学性质的稳定的GaSe样碳化钨单层

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摘要

On the basis of density functional theory (DFT) calculations, we propose a stable two-dimensional (2D) monolayer phosphorus carbide (PC) with a GaSe-like structure, which has intriguing electronic and optical properties. Our calculated results show that this 2D monolayer structure is more stable than the other allotropes predicted by Tománek et al. [Nano Lett., 2016, 16, 3247–3252]. More importantly, this structure exhibits superb optical absorption, which can be mainly attributed to its direct band gap of 2.65 eV. The band edge alignments indicate that the 2D PC monolayer structure can be a promising candidate for photocatalytic water splitting. Furthermore, we found that strain is an effective method used to tune the electronic structures varying from direct to indirect band-gap semiconductor or even to metal. In addition, the introduction of one carbon vacancy in such a 2D PC structure can induce a magnetic moment of 1.22 µB. Our findings add a new member to the 2D material family and provide a promising candidate for optoelectronic devices in the future.
机译:基于密度泛函理论(DFT)的计算,我们提出了一种具有GaSe样结构的稳定的二维(2D)单层碳化磷(PC),它具有吸引人的电子和光学特性。我们的计算结果表明,该二维单层结构比Tománek等人预测的其他同素异形体更稳定。 [Nano Lett。,2016,16,3247–3252]。更重要的是,这种结构具有极好的光学吸收,这主要归因于其2.65 eV的直接带隙。带边缘对准表明2D PC单层结构可以成为光催化水分解的有前途的候选者。此外,我们发现,应变是一种有效的方法,用于调整从直接带隙半导体到间接带隙半导体甚至金属的电子结构。另外,在这样的2D PC结构中引入一个碳空位可以引起1.22 µB的磁矩。我们的发现为2D材料家族增加了新成员,并为将来的光电器件提供了有希望的候选者。

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