Department of IT convergence Engineering, Pohang University of Science and Technology (POSTECH), Pohang, South Korea.
Nanoscale. 2012 Feb 7;4(3):897-903. doi: 10.1039/c2nr11593j. Epub 2011 Dec 15.
One-dimensional nanostructures such as ZnTe, CdTe, Bi(2)Te(3) and others have attracted much attention in recent years for their potential in thermoelectric devices among other applications. A better understanding of their mechanical properties is important for the design of devices. A combined experimental and computational approach has been used here to investigate the size effects on the Young's modulus of ZnTe nanowires (NWs). The mechanical properties of individual ZnTe nanowires in a wide diameter range (50-230 nm) were experimentally measured inside a high resolution transmission electron microscope using an atomic force microscope probe with the ability to record in situ continuous force-displacement curves. The in situ observations showed that ZnTe NWs are flexible nanostructures with the ability to withstand relatively high buckling forces without becoming fractured. The Young's modulus is found to be independent of nanowire diameter in the investigated range, in contrast to reported results for ZnO NWs and carbon nanotubes where the modulus increases with a decrease in diameter. Molecular dynamics simulations performed for nanowires with diameters less than 20 nm show limited size dependence for diameters smaller than 5 nm. The surface atoms present lower Young's modulus according to the simulations and the limited size dependency of the cylindrical ZnTe NWs is attributed to the short range covalent interactions.
近年来,一维纳米结构如 ZnTe、CdTe、Bi(2)Te(3) 等因其在热电设备等应用中的潜力而受到广泛关注。更好地了解它们的力学性能对于器件的设计非常重要。在这里,我们采用了实验和计算相结合的方法来研究 ZnTe 纳米线(NWs)的尺寸效应对杨氏模量的影响。使用原子力显微镜探针在高分辨率透射电子显微镜内对直径范围为 50-230nm 的单个 ZnTe 纳米线的力学性能进行了实验测量,该探针具有记录原位连续力-位移曲线的能力。原位观察表明,ZnTe NWs 是柔性纳米结构,具有承受相对较高屈曲力而不发生断裂的能力。结果发现,在所研究的范围内,杨氏模量与纳米线直径无关,这与 ZnO NWs 和碳纳米管的报道结果相反,在 ZnO NWs 和碳纳米管中,模量随直径的减小而增加。对于直径小于 20nm 的纳米线进行的分子动力学模拟表明,直径小于 5nm 时,尺寸依赖性有限。根据模拟结果,表面原子的杨氏模量较低,并且圆柱形 ZnTe NWs 的尺寸依赖性有限,这归因于短程共价相互作用。