Shanghai Institute of Applied Mathematics and Mechanics, Shanghai Key Laboratory of Mechanics in Energy Engineering, Shanghai University, Shanghai 200072, China.
Department of Mechanical Engineering, Boston University, Boston, Massachusetts 02215, USA.
Nat Commun. 2014 Aug 18;5:4727. doi: 10.1038/ncomms5727.
The Poisson's ratio is a fundamental mechanical property that relates the resulting lateral strain to applied axial strain. Although this value can theoretically be negative, it is positive for nearly all materials, though negative values have been observed in so-called auxetic structures. However, nearly all auxetic materials are bulk materials whose microstructure has been specifically engineered to generate a negative Poisson's ratio. Here we report using first-principles calculations the existence of a negative Poisson's ratio in a single-layer, two-dimensional material, black phosphorus. In contrast to engineered bulk auxetics, this behaviour is intrinsic for single-layer black phosphorus, and originates from its puckered structure, where the pucker can be regarded as a re-entrant structure that is comprised of two coupled orthogonal hinges. As a result of this atomic structure, a negative Poisson's ratio is observed in the out-of-plane direction under uniaxial deformation in the direction parallel to the pucker.
泊松比是一种基本的力学性质,它将产生的横向应变与轴向应变联系起来。尽管这个值理论上可以为负,但对于几乎所有的材料来说,它都是正的,尽管在所谓的各向异性结构中已经观察到了负的泊松比。然而,几乎所有的各向异性材料都是具有微观结构的块状材料,其微观结构经过专门设计以产生负泊松比。在这里,我们通过第一性原理计算报告了在单层二维材料黑磷中存在负泊松比。与工程块状各向异性材料不同,这种行为是单层黑磷的固有行为,它来源于其褶皱结构,其中褶皱可以被视为由两个耦合的正交铰链组成的再入结构。由于这种原子结构,在平行于褶皱的方向上进行单轴变形时,在垂直于平面的方向上观察到了负泊松比。