Panth Mohan, Cook Brent, Alamri Mohammed, Ewing Dan, Wilson Amy, Wu Judy Z
Department of Physics and Astronomy, University of Kansas, Lawrence, Kansas 66045, United States.
Department of Energy's Kansas City National Security Campus, Kansas City, Missouri 64147, United States.
ACS Omega. 2020 Oct 15;5(42):27359-27367. doi: 10.1021/acsomega.0c03683. eCollection 2020 Oct 27.
A fully flexible strain sensor consisting of vertically aligned ZnO nanowires on graphene transferred on polyethylene terephthalate with prefabricated Au/Ti electrodes (ZnO-VANWs/Gr)/PET) has been obtained. The ZnO-VANWs were grown in solution using a seedless hydrothermal process and are single-crystalline of (0001) orientation that provides optimal piezoelectric gating on graphene when deformed mechanically. The change of the graphene channel conductance under such a piezoelectric gating through transduction of the mechanical deformation on the ZnO-VANWs/Gr was used to detect the strain induced by the deformation. Under applied normal forces of 0.30, 0.50, and 0.70 N in a dynamic manner, the ZnO-VANWs/Gr/PET strain sensors exhibited a high response and response times of ∼0.20 s to both force on and off were achieved. Under mechanical bending curvatures of 0.18, 0.23, 0.37, and 0.45 cm, high sensitivity of the gauge factors up to ∼248 and response times of 0.20 s/0.20 s (rise/fall) were achieved on the ZnO-VANWs/Gr/PET strain sensors. Moreover, the response changes polarity when the directions of bending alters between up and down, corresponding to the polarity change of the space charge on the ZnO-VANWs/Gr interface as a consequence of the compressive and tensile strains along the ZnO-VANWs. This result shows that the low-cost and scalable ZnO-VANWs/Gr/PET strain sensors are promising for applications in stress/strain monitoring, wearable electronics, and touch screens.
已获得一种完全柔性的应变传感器,其由转移到带有预制金/钛电极的聚对苯二甲酸乙二酯(PET)上的石墨烯上垂直排列的氧化锌纳米线组成(ZnO-VANWs/Gr)/PET)。ZnO-VANWs通过无籽水热法在溶液中生长,并且是(0001)取向的单晶,当机械变形时,该取向在石墨烯上提供最佳的压电势垒。通过ZnO-VANWs/Gr上的机械变形转导,在这种压电势垒下石墨烯通道电导的变化被用于检测由变形引起的应变。在以动态方式施加0.30、0.50和0.70 N的法向力时,ZnO-VANWs/Gr/PET应变传感器表现出高响应,并且在力施加和去除时均实现了约0.20 s的响应时间。在0.18、0.23、0.37和0.45 cm的机械弯曲曲率下,ZnO-VANWs/Gr/PET应变传感器实现了高达约248的应变计因子高灵敏度和0.20 s/0.20 s(上升/下降)的响应时间。此外,当弯曲方向在上下之间改变时,响应会改变极性,这对应于由于沿ZnO-VANWs的压缩和拉伸应变导致的ZnO-VANWs/Gr界面上空间电荷的极性变化。该结果表明,低成本且可扩展的ZnO-VANWs/Gr/PET应变传感器在应力/应变监测、可穿戴电子设备和触摸屏应用中具有广阔前景。