ACS Appl Mater Interfaces. 2019 Jun 12;11(23):21218-21226. doi: 10.1021/acsami.9b02518. Epub 2019 May 29.
Flexible pressure sensors play an important role in electronic skins (E-Skins), which mimic the mechanical forces sensing properties of human skin. A rational design for a pressure sensor with adjustable characteristics is in high demand for different application scenarios. Here, we present tunable, ultrasensitive, and flexible pressure sensors based on compressible wrinkled microstructures. Modifying the morphology of polydimethylsiloxane (PDMS) microstructure enables the device to obtain different sensitivities and pressure ranges for different requirements. Furthermore, by intentionally introducing hollow structures in the PDMS wrinkles, our pressure sensor exhibits an ultrahigh sensitivity of 14.268 kPa. The elastic microstructure-based capacitive sensor also possesses a very low detectable pressure limit (1.5 Pa), a fast response time (<50 ms), a wide pressure range, and excellent cycling stability. Implementing respiratory monitoring and vocalization recognition is realized by attaching the flexible pressure sensor onto the chest and throat, respectively, showing its great application potential for disease diagnosis, monitoring, and other advanced clinical/biological wearable technologies.
柔性压力传感器在电子皮肤(E-Skins)中起着重要作用,可模拟人体皮肤的机械力感应特性。对于不同的应用场景,需要对具有可调特性的压力传感器进行合理设计。在这里,我们提出了基于可压缩褶皱微结构的可调谐、超灵敏、柔性压力传感器。通过改变聚二甲基硅氧烷(PDMS)微结构的形态,使该器件能够针对不同的要求获得不同的灵敏度和压力范围。此外,通过在 PDMS 褶皱中有意引入空心结构,我们的压力传感器表现出超高的灵敏度为 14.268 kPa。基于弹性微结构的电容传感器还具有非常低的可检测压力极限(1.5 Pa)、快速的响应时间(<50 ms)、宽的压力范围和出色的循环稳定性。通过将柔性压力传感器分别粘贴在胸部和喉咙上,实现了呼吸监测和发声识别,显示出其在疾病诊断、监测和其他先进的临床/生物可穿戴技术方面的巨大应用潜力。