Physics and Astronomy Department, Michigan State University, East Lansing, Michigan 48824, USA.
Phys Rev Lett. 2014 May 2;112(17):176802. doi: 10.1103/PhysRevLett.112.176802. Epub 2014 May 1.
We investigate a previously unknown phase of phosphorus that shares its layered structure and high stability with the black phosphorus allotrope. We find the in-plane hexagonal structure and bulk layer stacking of this structure, which we call "blue phosphorus," to be related to graphite. Unlike graphite and black phosphorus, blue phosphorus displays a wide fundamental band gap. Still, it should exfoliate easily to form quasi-two-dimensional structures suitable for electronic applications. We study a likely transformation pathway from black to blue phosphorus and discuss possible ways to synthesize the new structure.
我们研究了一种以前未知的磷相,它与黑磷同素异形体具有相同的层状结构和高稳定性。我们发现这种结构具有平面六边形结构和体层堆积,我们称之为“蓝磷”,它与石墨有关。与石墨和黑磷不同,蓝磷具有较宽的基本带隙。然而,它应该很容易剥落形成适合电子应用的准二维结构。我们研究了从黑磷到蓝磷的可能转化途径,并讨论了合成新结构的可能途径。