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基于 PEDOT:PSS@PVA 水凝胶纤维的高灵敏度和极端环境抗性传感器,用于生理监测。

High-Sensitivity and Extreme Environment-Resistant Sensors Based on PEDOT:PSS@PVA Hydrogel Fibers for Physiological Monitoring.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 3;14(30):35114-35125. doi: 10.1021/acsami.2c09556. Epub 2022 Jul 21.

Abstract

The rapid development of flexible electronic devices has caused a boom in researching flexible sensors based on hydrogels, but most of the flexible sensors can only work at room temperature, and they are difficult to adapt to extremely cold or dry environments. Here, the flexible hydrogel fibers (PEDOT:PSS@PVA) with excellent resistance to extreme environments have been prepared by adding glycerin (GL) to the mixture of poly(vinyl alcohol) (PVA) and poly 3,4-dioxyethylene thiophene:polystyrene sulfonic acid (PEDOT:PSS) because GL molecules can form dynamic hydrogen bonds with an elastic matrix of PVA molecules. It is found that the prepared sensor exhibits very good flexibility and mechanical strength, and the ultimate tensile strength can reach up to 13.76 MPa when the elongation at break is 519.9%. Furthermore, the hydrogel fibers possess excellent water retention performance and low-temperature resistance. After being placed in the atmospheric environment for 1 year, the sensor still shows good flexibility. At a low temperature of -60 °C, the sensor can stably endure 1000 repeated stretches and shrinks (10% elongation). In addition to the response to a large strain, this fiber sensor can also detect extremely small strains as low as 0.01%. It is proved that complex human movements such as knuckle bending, vocalization, pulse, and others can be monitored perfectly by this fiber sensor. The above results mean that the PEDOT:PSS@PVA fiber sensor has great application prospects in physiological monitoring.

摘要

柔性电子设备的快速发展促使基于水凝胶的柔性传感器研究蓬勃发展,但大多数柔性传感器只能在室温下工作,难以适应极冷或干燥的环境。在这里,通过在聚(乙烯醇)(PVA)和聚 3,4-二氧乙基噻吩:聚苯乙烯磺酸(PEDOT:PSS)的混合物中添加甘油(GL),制备了具有优异抗极端环境性能的柔性水凝胶纤维(PEDOT:PSS@PVA),因为 GL 分子可以与 PVA 分子的弹性基质形成动态氢键。研究发现,所制备的传感器表现出非常好的柔韧性和机械强度,当断裂伸长率为 519.9%时,其极限拉伸强度可高达 13.76 MPa。此外,水凝胶纤维具有优异的保水性能和耐低温性。在大气环境中放置 1 年后,传感器仍保持良好的柔韧性。在低至-60°C 的低温下,传感器可以稳定地承受 1000 次重复拉伸和收缩(伸长率为 10%)。除了对大应变的响应外,这种纤维传感器还可以检测低至 0.01%的极小应变。事实证明,这种纤维传感器可以完美地监测指关节弯曲、发声、脉搏等复杂的人体运动。上述结果表明,PEDOT:PSS@PVA 纤维传感器在生理监测方面具有广阔的应用前景。

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