Chen C Q, Shi Y, Zhang Y S, Zhu J, Yan Y J
Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.
Phys Rev Lett. 2006 Feb 24;96(7):075505. doi: 10.1103/PhysRevLett.96.075505. Epub 2006 Feb 23.
We report a size dependence of Young's modulus in [0001] oriented ZnO nanowires (NWs) with diameters ranging from 17 to 550 nm for the first time. The measured modulus for NWs with diameters smaller than about 120 nm is increasing dramatically with the decreasing diameters, and is significantly higher than that of the larger ones whose modulus tends to that of bulk ZnO. A core-shell composite NW model in terms of the surface stiffening effect correlated with significant bond length contractions occurred near the {1010} free surfaces (which extend several layers deep into the bulk and fade off slowly) is proposed to explore the origin of the size dependence, and present experimental result is well explained. Furthermore, it is possible to estimate the size-related elastic properties of GaN nanotubes and relative nanostructures by using this model.
我们首次报道了直径在17至550纳米范围内的[0001]取向氧化锌纳米线(NWs)的杨氏模量与尺寸的相关性。直径小于约120纳米的纳米线的测量模量随着直径减小而急剧增加,且显著高于较大尺寸纳米线的模量,后者的模量趋近于块状氧化锌的模量。提出了一种核壳复合纳米线模型,该模型考虑了与{1010}自由表面(其深入块状材料几层并缓慢衰减)附近显著的键长收缩相关的表面硬化效应,以探究尺寸相关性的起源,且实验结果得到了很好的解释。此外,利用该模型可以估计氮化镓纳米管及相关纳米结构与尺寸相关的弹性性能。