Gao Yifan, Wen Minru, Zhang Xin, Wu Fugen, Xia Qinglin, Wu Haoyi, Dong Huafeng
School of Physics and Optoelectronic Engineering, Guangdong University of Technology, Guangzhou 510006, China.
School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, China.
Phys Chem Chem Phys. 2021 Feb 12;23(5):3441-3446. doi: 10.1039/d0cp05005a.
Negative Poisson's ratio (NPR) materials (when stretched longitudinally, the thickness of these materials increases along the lateral direction) are widely used in engineering because of their good resistance to shear, denting, and fracture. Observance of a negative Poisson's ratio (NPR) in two-dimensional (2D) single-layer materials presently has two explanations. The first, from mechanical principles, is that it derives from the presence of a special structure (hinge structure), such as in single-layer black phosphorus (BP) or black arsenic (β-As). The second, from electronic effects, is that it derives from (non-hinge-like) planar honeycomb structures and transition-metal dichalcogenides, MX2. Through first-principle calculations, we show that 2D single-layer materials with a hinge structure also have distinct electronic effects, similar to those observed from 2D planar honeycomb materials. Under strain, electronic effects of Px orbitals lead to the inherent NPR of the 2D single-layer material with a hinge structure. We discuss the influencing factors of the hinge structure on the NPR and demonstrate that the electronic effects inside the hinge structure are the fundamental factor in determining the inherent NPR.
负泊松比(NPR)材料(在纵向拉伸时,这些材料的厚度会沿横向增加)因其良好的抗剪切、抗凹陷和抗断裂性能而在工程中得到广泛应用。目前,二维(2D)单层材料中负泊松比(NPR)的存在有两种解释。第一种,从力学原理来讲,它源于特殊结构(铰链结构)的存在,比如在单层黑磷(BP)或黑砷(β-As)中。第二种,从电子效应来讲,它源于(非类似铰链的)平面蜂窝结构和过渡金属二硫属化物MX₂ 。通过第一性原理计算,我们表明具有铰链结构的二维单层材料也具有独特的电子效应,类似于从二维平面蜂窝材料中观察到的效应。在应变作用下,Px轨道的电子效应导致具有铰链结构的二维单层材料具有固有的负泊松比。我们讨论了铰链结构对负泊松比的影响因素,并证明铰链结构内部的电子效应是决定固有负泊松比的根本因素。