Liu Mei, Su Weilin, Qin Xiangzheng, Cheng Kai, Ding Wei, Ma Li, Cui Ze, Chen Jinbo, Rao Jinjun, Ouyang Hangkong, Sun Tao
Shanghai Key Laboratory of Intelligent Manufacturing and Robotics, School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200072, China.
Micromachines (Basel). 2021 Feb 28;12(3):248. doi: 10.3390/mi12030248.
ZnO nanomaterials have been widely used in micro/nano devices and structure due to special mechanical/electrical properties, and its characterization is still deficient and challenging. In this paper, ZnO nanomaterials, including nanorod and nanowire are characterized by atomic force microscope (AFM) and nanomanipulator embedded in scanning electron microscope (SEM) respectively, which can manipulate and observe simultaneously, and is efficient and cost effective. Surface morphology and mechanical properties were observed by AFM. Results showed that the average Young's modulus of ZnO nanorods is 1.40 MPa and the average spring rate is 0.08 N/m. Electrical properties were characterized with nanomanipulator, which showed that the ZnO nanomaterial have cut-off characteristics and good schottky contact with the tungsten probes. A two-probe strategy was proposed for piezoelectric property measurement, which is easy to operate and adaptable to multiple nanomaterials. Experiments showed maximum voltage of a single ZnO nanowire is around 0.74 mV. Experiment criteria for ZnO manipulation and characterization were also studied, such as acceleration voltage, operation duration, sample preparation. Our work provides useful references for nanomaterial characterization and also theoretical basis for nanomaterials application.
由于具有特殊的机械/电学性能,氧化锌纳米材料已在微纳器件和结构中得到广泛应用,但其表征仍存在不足且具有挑战性。本文分别利用原子力显微镜(AFM)和嵌入扫描电子显微镜(SEM)中的纳米操纵器对包括纳米棒和纳米线在内的氧化锌纳米材料进行表征,该纳米操纵器可同时进行操纵和观察,且高效且经济。通过AFM观察表面形貌和力学性能。结果表明,氧化锌纳米棒的平均杨氏模量为1.40兆帕,平均弹簧常数为0.08牛/米。利用纳米操纵器对电学性能进行表征,结果表明氧化锌纳米材料具有截止特性,且与钨探针具有良好的肖特基接触。提出了一种用于压电性能测量的双探针策略,该策略易于操作且适用于多种纳米材料。实验表明,单根氧化锌纳米线的最大电压约为0.74毫伏。还研究了氧化锌操纵和表征的实验标准,如加速电压、操作持续时间、样品制备等。我们的工作为纳米材料表征提供了有用的参考,也为纳米材料应用提供了理论基础。