Department of Chemical Engineering, Faculty of Engineering , Monash University , Clayton 3800 , Victoria , Australia.
The Melbourne Centre for Nanofabrication , 151 Wellington Road , Clayton 3168 , Victoria , Australia.
ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29014-29021. doi: 10.1021/acsami.9b06260. Epub 2019 Aug 1.
We have recently demonstrated that vertically aligned gold nanowires (v-AuNWs) are outstanding material candidates for wearable biomedical sensors toward real-time and noninvasive health monitoring because of their excellent tunable electrical conductivity, biocompatibility, chemical inertness, and wide electrochemical window. Here, we show that v-AuNWs could also be used to design a high-performance wearable pressure sensor when combined with rational structural engineering such as pyramid microarray-based hierarchical structures. The as-fabricated pressure sensor featured a low operation voltage of 0.1 V, high sensitivity in a low-pressure regime, a fast response time of <10 ms, and high durability with stable signals for the 10 000 cycling test. In conjunction with printed electrode arrays, we could generate a multiaxial map for spatial pressure detection. Furthermore, our flexible pressure sensor could be seamlessly connected with a Bluetooth low-energy module to detect high-quality artery pulses in a wireless manner. Our solution-based gold coating strategy offers the benefit of conformal coating of nanowires onto three-dimensional microstructured elastomeric substrates under ambient conditions, indicating promising applications in next-generation wearable biodiagnostics.
我们最近的研究表明,垂直排列的金纳米线(v-AuNWs)是用于可穿戴生物医学传感器的出色材料候选者,可实现实时和非侵入式健康监测,因为它们具有出色的可调导电性、生物相容性、化学惰性和宽电化学窗口。在这里,我们展示了当与合理的结构工程(如基于金字塔微阵列的分层结构)结合使用时,v-AuNWs 也可用于设计高性能的可穿戴压力传感器。所制造的压力传感器具有 0.1 V 的低工作电压、低压区的高灵敏度、<10 ms 的快速响应时间以及 10000 次循环测试中稳定信号的高耐用性。结合印刷电极阵列,我们可以生成用于空间压力检测的多轴图。此外,我们的柔性压力传感器可以与蓝牙低能模块无缝连接,以无线方式检测高质量的动脉脉搏。我们的基于溶液的金涂层策略具有在环境条件下将纳米线 conformal 涂层涂覆到三维微结构弹性体基底上的优势,这表明它在下一代可穿戴生物诊断方面具有广阔的应用前景。