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Interfacial adhesion of ZnO nanowires on a Si substrate in air

机译:如果界面粘附的氧化锌纳米线底物在空气中

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It is imperative to understand the interfacial adhesive behaviour of nanowires (NW) integrated into a nanoelectromechanical system in order to design commercialisable nanogenerators as well as ultrasensitive sensors. Currently available interfacial adhesion characterisation techniques that utilise in situ electron microscopy subject nanoscale systems to a high-vacuum, electron-irradiated environment, potentially altering their interfacial interactions. Alternatively, force-sensing techniques conducted in air do not provide visual feedback of the interface, and therefore can only indirectly deduce adhesive properties. Here, we present an interface characterisation technique that enforces ZnO NWs to remain partially delaminated on a Si substrate, and permits optical observation of their deformed condition in air. NWs are draped over a wedge and are allowed to conform to their minimum energy state. We evaluate the strain energy stored in the suspended segment of each NW by determining their deflected shape from interferometry. We show that utilising a tailored Euler-Bernoulli beam model which accounts for the tapering and irregularity of a NW is crucial for accurately evaluating their interfacial adhesion energy. A nominal energy per unit interface area value of & xe0ba;(F-B,irr,taper) = 51.1 +/- 31.9 mJ m(-2) is obtained for the ZnO NW-Si substrate interface; a magnitude lower than that found using electron microscopy, and higher than the upper-bound of the theoretically predicted van der Waals interaction energy of gamma(vdW) = 7.2 mJ m(-2). This apparent discrepancy has significant implications for any nanotribological study conducted inside an electron microscope. The results also implicate electrostatic and capillary interactions as significant contributors towards a NW's adhesive behaviour during device operation.
机译:必须理解界面纳米线的粘附行为(西北)集成成一个为了nanoelectromechanical系统设计commercialisable王中林教授以及超灵敏传感器。界面粘附描述技术利用原位电镜主题纳米级高真空系统,电子束照射的环境,可能改变他们的界面交互。另外,电阻值技术进行在空气中不提供视觉反馈接口,因此只能间接地推断出胶的性质。接口描述技术执行氧化锌NWs保持部分剥落硅衬底上,允许光在空气中观察其变形状况。NWs搭在一块楔子和允许符合最低能量状态。评估中存储的应变能每个NW决定他们的悬浮段从干涉挠曲形状。利用定制Euler-Bernoulli梁模型占逐渐减少和不规则西北的准确评估的关键他们的界面粘附的能量。能量单位界面面积和价值xe0ba; (F-B irr,锥度)= 51.1 + / - 31.9 mJ m (2)得到的氧化锌NW-Si衬底界面;使用电子级低于发现显微镜,高于上限从理论上预言范德瓦耳斯就是secu * tanu减去vdWγ的相互作用能()= 7.2 mJ m(2)。这种明显的差异显著对任何nanotribological研究的影响在电子显微镜下进行。结果还表明静电毛细作用同样重要贡献者对西北的粘附行为在设备操作。

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