Department of Mechanical and Aerospace Engineering, University of Florida, 231 MAE-A, PO Box 116250, Gainesville, Florida 32611-6250, USA.
Nat Commun. 2013;4:2682. doi: 10.1038/ncomms3682.
A configuration that shows great promise in sensing applications is vertically aligned piezoelectric nanowire arrays that allow facile interfacing with electrical interconnects. Nano-electromechanical systems developed using piezoelectric nanowires have gained interest primarily for their potential in energy harvesting applications, because they are able to convert several different sources of mechanical energy into useful electrical power. To date, no results have demonstrated the capability to use aligned piezoelectric nanowire arrays as a highly accurate nano-electromechanical system based dynamic sensor with a wide operating bandwidth and unity coherence. Here we report the growth of vertically aligned (~45 μm long) barium titanate nanowire arrays, realized through a two-step hydrothermal synthesis approach, and demonstrate their use as an accurate accelerometer. High sensitivity of up to 50 mV g(-1) is observed from the sensor composed of vertically aligned barium titanate nanowire arrays, thus providing performance comparable to many of the commercial accelerometer systems.
一种在传感应用中显示出巨大潜力的配置是垂直排列的压电纳米线阵列,它可以方便地与电互连接口。使用压电纳米线开发的纳机电系统主要因其在能量收集应用中的潜力而受到关注,因为它们能够将几种不同的机械能转化为有用的电能。迄今为止,还没有结果表明可以使用对齐的压电纳米线阵列作为具有宽工作带宽和单位相干性的高精度纳机电系统动态传感器。在这里,我们报告了通过两步水热合成方法实现的垂直排列(~45 μm 长)钛酸钡纳米线阵列的生长,并展示了它们在作为精确加速度计中的应用。由垂直排列的钛酸钡纳米线阵列组成的传感器表现出高达 50 mV g(-1)的高灵敏度,因此提供了与许多商业加速度计系统相当的性能。