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Performance improvement of miniaturized ZnO nanowire accelerometer fabricated by refresh hydrothermal synthesis

机译:刷新水热合成制备的ZnO纳米线加速度传感器的性能改进

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摘要

Miniaturized accelerometers are necessary for evaluating the performance of small devices, such as haptics, robotics and simulators. In this study, we fabricated miniaturized accelerometers using well-aligned ZnO nanowires. The layer of ZnO nanowires is used for active piezoelectric layer of the accelerometer, and copper was chosen as a head mass. Seedless and refresh hydrothermal synthesis methods were conducted to grow ZnO nanowires on the copper substrate and the effect of ZnO nanowire length on the accelerometer performance was investigated. The refresh hydrothermal synthesis exhibits longer ZnO nanowires, 12 µm, than the seedless hydrothermal synthesis, 6 µm. Performance of the fabricated accelerometers was verified by comparing with a commercial accelerometer. The sensitivity of the fabricated accelerometer by the refresh hydrothermal synthesis is shown to be 37.7 pA g−1, which is about 30 times larger than the previous result.
机译:微型加速度计对于评估小型设备(如触觉,机器人技术和模拟器)的性能是必不可少的。在这项研究中,我们使用排列良好的ZnO纳米线制造了小型加速度计。 ZnO纳米线层用作加速度计的有源压电层,并选择铜作为头部质量。进行了无籽和刷新水热合成方法,以在铜基板上生长ZnO纳米线,并研究了ZnO纳米线长度对加速度计性能的影响。刷新的水热合成具有比无籽水热合成更长的ZnO纳米线12µm,而无籽水热合成只有6µm。通过与商用加速度计进行比较来验证所制造的加速度计的性能。通过刷新水热法合成的加速度计的灵敏度显示为37.7 pA g -1 ,约为先前结果的30倍。

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