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Strain and the optoelectronic properties of nonplanar phosphorene monolayers

机译:非平面phosphor单层的应变和光电性能

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摘要

Lattice kirigami, ultralight metamaterials, polydisperse aggregates, ceramic nanolattices, and 2D atomic materials share an inherent structural discreteness, and their material properties evolve with their shape. To exemplify the intimate relation among material properties and the local geometry, we explore the properties of phosphorene––a new 2D atomic material––in a conical structure, and document a decrease of the semiconducting gap that is directly linked to its nonplanar shape. This geometrical effect occurs regardless of phosphorene allotrope considered, and it provides a unique optical vehicle to single out local structural defects on this 2D material. We also classify other 2D atomic materials in terms of their crystalline unit cells, and propose means to obtain the local geometry directly from their diverse 2D structures while bypassing common descriptions of shape that are based from a parametric continuum.
机译:晶格rigigami,超轻型超材料,多分散聚集体,陶瓷纳米晶格和2D原子材料具有固有的结构离散性,并且它们的材料特性随形状而变化。为了举例说明材料特性和局部几何形状之间的密切关系,我们探索了圆锥结构中磷的性质(一种新型的2D原子材料),并记录了与非平面形状直接相关的半导体间隙的减小。不管考虑的是磷烯同素异形体如何,都会发生这种几何效应,并且它提供了一种独特的光学载体来识别这种2D材料上的局部结构缺陷。我们还将其他2D原子材料按照其晶体晶胞进行分类,并提出直​​接从其各种2D结构获得局部几何结构的方法,同时绕过基于参数连续体的形状的常见描述。

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