Wei Peng, Yang Dong-Jian, Xue Yixuan, Jiang Jin-Wu
Shanghai Key Laboratory of Mechanics in Energy Engineering, Shanghai Institute of Applied Mathematics and Mechanics, Shanghai Frontier Science Center of Mechanoinformatics, School of Mechanics and Engineering Science, Shanghai University, Shanghai 200072, People's Republic of China.
Zhejiang Laboratory, Hangzhou 311100, People's Republic of China.
Nanotechnology. 2023 Nov 17;35(5). doi: 10.1088/1361-6528/ad0481.
Materials exhibiting a negative Poisson's ratio have garnered considerable attention due to the improved toughness, shear resistance, and vibration absorption properties commonly found in auxetic materials. In this work, the nonlinear effect on the Poisson's ratio was derived theoretically and verified by first-principle calculations and molecular dynamics simulations of two-dimensional nanomaterials including graphene and hexagonal boron nitride. The analytic formula explicitly shows that the Poisson's ratio depends on the applied strain and can be negative for large applied strains, owing to the nonlinear interaction. Both first-principle calculations and molecular dynamics simulations show that the nonlinear effect is highly anisotropic for graphene, where the nonlinearity-induced negative Poisson's ratio is much stronger for the strain applied along the armchair direction. These findings provide valuable insights into the behavior of materials with negative Poisson's ratios and emphasize the importance of considering nonlinear effects in the study of the Poisson's ratio of two-dimensional materials.
具有负泊松比的材料因其在拉胀材料中常见的韧性、抗剪性和吸振性能的改善而备受关注。在这项工作中,通过包括石墨烯和六方氮化硼在内的二维纳米材料的第一性原理计算和分子动力学模拟,从理论上推导了泊松比的非线性效应并进行了验证。该解析公式明确表明,由于非线性相互作用,泊松比取决于所施加的应变,并且在大应变下可能为负。第一性原理计算和分子动力学模拟均表明,石墨烯的非线性效应具有高度各向异性,其中沿扶手椅方向施加的应变导致的非线性诱导负泊松比要强得多。这些发现为具有负泊松比的材料的行为提供了有价值的见解,并强调了在二维材料泊松比研究中考虑非线性效应的重要性。