Zhao Junhua, Yang Zhaoyao, Wei Ning, Kou Liangzhi
Jiangsu Key Laboratory of Advanced Manufacturing Equipment and Technology of Food, Jiangnan University, 214122, Wuxi, China.
College of Water Resources and Architectural Engineering, Northwest A&F University, Yangling 712100, China.
Sci Rep. 2016 Mar 16;6:23233. doi: 10.1038/srep23233.
Two dimensional (2D) gamma-boron (γ-B28) thin films have been firstly reported by the experiments of the chemical vapor deposition in the latest study. However, their mechanical properties are still not clear. Here we predict the superhigh moduli (785 ± 42 GPa at 300 K) and the tension-induced phase transition of monolayer γ-B28 along a zigzag direction for large deformations at finite temperatures using molecular dynamics (MD) simulations. The new phase can be kept stable after unloading process at these temperatures. The predicted mechanical properties are reasonable when compared with our results from density functional theory. This study provides physical insights into the origins of the new phase transition of monolayer γ-B28 at finite temperatures.
在最新研究中,二维(2D)γ - 硼(γ - B28)薄膜首次通过化学气相沉积实验被报道。然而,它们的力学性能仍不清楚。在此,我们使用分子动力学(MD)模拟预测了单层γ - B28在有限温度下沿锯齿形方向大变形时的超高模量(300 K时为785±42 GPa)以及拉伸诱导的相变。在这些温度下卸载后,新相能够保持稳定。与我们密度泛函理论的结果相比,预测的力学性能是合理的。这项研究为单层γ - B28在有限温度下新相变的起源提供了物理见解。