Adak Abhishek K, Sharma Devina, Narasimhan Shobhana
Theoretical Sciences Unit & School of Advanced Materials, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore 560 064, India.
J Phys Condens Matter. 2021 Dec 2;34(8). doi: 10.1088/1361-648X/ac394e.
We have performed density functional theory calculations to study blue phosphorene and black phosphorene on metal substrates. The substrates considered are the (111) and (110) surfaces of Al, Cu, Ag, Ir, Pd, Pt and Au and the (0001) and (101¯0) surfaces of Zr and Sc. The formation energyis negative (energetically favorable) for all 36 combinations of overlayer and substrate. By comparing values of ΔΩ, the change in free energy per unit area, as well as the overlayer-substrate binding energy, we identify that Ag(111), Al(110), Cu(111), Cu(110) and possibly Au(110) may be especially suitable substrates for the synthesis and subsequent exfoliation of blue phosphorene, and the Ag(110) and Al(111) substrates for the synthesis of black phosphorene. However, these conclusions are drawn assuming the source of P atoms is bulk phosphorus, and can alter upon changing synthesis conditions (chemical potential of phosphorus). Thus, when the source of phosphorus atoms is P, blue phosphorene is favored only over Pt(111). We find that for all combinations of overlayer and substrate, the charge transfer per bond can be captured by the universal descriptorD=Δχ/ΔR, where ΔandΔRare, respectively, the differences in electronegativity and atomic size between phosphorus and the substrate metal.
我们进行了密度泛函理论计算,以研究金属衬底上的蓝磷烯和黑磷烯。所考虑的衬底是Al、Cu、Ag、Ir、Pd、Pt和Au的(111)和(110)表面以及Zr和Sc的(0001)和(101¯0)表面。对于覆盖层和衬底的所有36种组合,形成能均为负(能量上有利)。通过比较单位面积自由能变化量ΔΩ以及覆盖层 - 衬底结合能的值,我们确定Ag(111)、Al(110)、Cu(111)、Cu(110)以及可能的Au(110)可能是蓝磷烯合成及后续剥离特别合适的衬底,而Ag(110)和Al(111)衬底适合黑磷烯的合成。然而,这些结论是在假设P原子源为块状磷的情况下得出的,并且会随着合成条件(磷的化学势)的变化而改变。因此,当磷原子源为P时,仅在Pt(111)上蓝磷烯更受青睐。我们发现,对于覆盖层和衬底的所有组合,每个键的电荷转移可以用通用描述符D =Δχ/ΔR来捕捉,其中Δχ和ΔR分别是磷与衬底金属之间的电负性和原子尺寸差异。