Kumar Rajesh, Rajasekaran G, Parashar Avinash
Department of Mechanical and Industrial Engineering, Indian Institute of Technology, Roorkee-247667, India.
Nanotechnology. 2016 Feb 26;27(8):085706. doi: 10.1088/0957-4484/27/8/085706. Epub 2016 Jan 28.
In this article, molecular dynamics based simulations were carried out to study the tensile behaviour of boron nitride nanosheets (BNNSs). Four different sets of Tersoff potential parameters were used in the simulations for estimating the interatomic interactions between boron and nitrogen atoms. Modifications were incorporated in the Tersoff cut-off function to improve the accuracy of results with respect to fracture stress, fracture strain and Young's modulus. In this study, the original cut-off function was optimised in such a way that small and large cut-off distances were made equal, and hence a single cut-off distance was used with all sets of Tersoff potential parameters. The single value of cut-off distance for the Tersoff potential was chosen after analysing the potential energy and bond forces experienced by boron and nitrogen atoms subjected to bond stretching. The simulations performed with the optimised cut-off function help in identifying the Tersoff potential parameters that reproduce the experimentally evaluated mechanical behaviour of BNNSs.
在本文中,进行了基于分子动力学的模拟,以研究氮化硼纳米片(BNNSs)的拉伸行为。在模拟中使用了四组不同的Tersoff势参数来估计硼原子和氮原子之间的原子间相互作用。对Tersoff截止函数进行了修正,以提高关于断裂应力、断裂应变和杨氏模量的结果的准确性。在本研究中,对原始截止函数进行了优化,使小截止距离和大截止距离相等,因此对所有组的Tersoff势参数都使用单一的截止距离。在分析了硼原子和氮原子在键拉伸时所经历的势能和键力后,选择了Tersoff势的单一截止距离值。使用优化后的截止函数进行的模拟有助于确定能够重现BNNSs实验评估力学行为的Tersoff势参数。