Institute for Applied Physics, University of Science and Technology Beijing, Beijing, People's Republic of China.
J Phys Condens Matter. 2012 Feb 1;24(4):045001. doi: 10.1088/0953-8984/24/4/045001. Epub 2011 Dec 21.
We propose a novel interlayer potential, which is different from usual interatomic potentials. The interlayer potential represents the interaction between atomic layers in a layered material. Based on the Chen-Möbius inversion method in combination with ab initio calculations, the interlayer interactions are obtained for the face centered cubic (fcc) (111) planes. In order to check the validity of our interlayer potential, we calculate the intrinsic stacking fault energy (γ(sf)) and the surface energy (γ(s)) of five metals: Al, Ni, Cu, Ag and Au. The predicted γ(sf) and γ(s) values are compared with the theoretical results obtained from direct calculations and also with the available experimental data. Using the interlayer potentials, we also investigate the phonon dispersion and phonon density of state in the fcc (111) plane family of the considered metals.
我们提出了一种新的层间势,它与通常的原子间势不同。层间势代表层状材料中原子层之间的相互作用。基于陈-莫比乌斯反演方法结合第一性原理计算,得到了面心立方(fcc)(111)面的层间相互作用。为了检验我们的层间势的有效性,我们计算了五种金属的本征堆垛层错能(γ(sf))和表面能(γ(s)):Al、Ni、Cu、Ag 和 Au。预测的γ(sf)和γ(s)值与直接计算得到的理论结果以及可用的实验数据进行了比较。我们还使用层间势研究了所考虑金属的 fcc(111)面族的声子色散和声子态密度。