Zhang W, Smith J R
Princeton Materials Institute, Princeton University, Princeton, New Jersey 08540, USA.
Phys Rev Lett. 2000 Oct 9;85(15):3225-8. doi: 10.1103/PhysRevLett.85.3225.
We have determined the relative stability of stoichiometric, oxygen-rich, and aluminum-rich Al/Al 2O (3) and Ag/Al 2O (3) interfaces from first principles. Stable structures vary significantly with oxygen chemical potentials. Computed works of adhesion agree reasonably well with sessile drop experimental values, including correlation with measured oxygen chemisorption effects on Ag. The ordering of predicted bond energies of the interfaces, ceramics, and metals seems consistent with monotonic and fatigue fracture experiments.
我们已从第一性原理确定了化学计量比、富氧和富铝的Al/Al₂O₃及Ag/Al₂O₃界面的相对稳定性。稳定结构随氧化学势变化显著。计算得到的粘附功与座滴实验值相当吻合,包括与测量的Ag上氧化学吸附效应的相关性。预测的界面、陶瓷和金属的键能排序似乎与单调和疲劳断裂实验一致。