Research Institute for Biomimetics and Soft Matter, College of Materials, College of Physical Science and Technology, Xiamen University, Xiamen, 361005, China.
Department of Physics, Faculty of Science, National University of Singapore, Singapore, 117542, Singapore.
Small. 2019 Mar;15(11):e1805084. doi: 10.1002/smll.201805084. Epub 2019 Jan 28.
Due to the natural biodegradability and biocompatibility, silk fibroin (SF) is one of the ideal platforms for on-skin and implantable electronic devices. However, the development of SF-based electronics is still at a preliminary stage due to the SF film intrinsic brittleness as well as the solubility in water, which prevent the fabrication of SF-based electronics through traditional techniques. In this article, a flexible and stretchable silver nanofibers (Ag NFs)/SF based electrode is synthesized through water-free procedures, which demonstrates outstanding performance, i.e., low sheet resistance (10.5 Ω sq ), high transmittance (>90%), excellent stability even after bending cycles >2200 times, and good extensibility (>60% stretching). In addition, on the basis of such advanced (Ag NFs)/SF electrode, a flexible and tactile sensor is further fabricated, which can simultaneously detect pressure and strain signals with a large monitoring window (35 Pa-700 kPa). Besides, this sensor is air-permeable and inflammation-free, so that it can be directly laminated onto human skins for long-term health monitoring. Considering the biodegradable and skin-comfortable features, this sensor may become promising to find potential applications in on-skin or implantable health-monitoring devices.
由于天然的可生物降解性和生物相容性,丝素纤维(SF)是用于皮肤贴合和可植入电子设备的理想平台之一。然而,由于 SF 薄膜的固有脆性以及在水中的可溶性,SF 基电子产品的开发仍处于初级阶段,这阻碍了通过传统技术制造 SF 基电子产品。在本文中,通过无水程序合成了一种具有柔韧性和拉伸性的银纳米纤维(Ag NF)/SF 基电极,该电极表现出优异的性能,例如低面电阻(10.5 Ω sq)、高透过率(>90%)、即使在弯曲循环>2200 次后仍具有出色的稳定性,以及良好的拉伸性(>60%的拉伸率)。此外,在此先进的(Ag NF)/SF 电极的基础上,进一步制造了一种灵活的触觉传感器,该传感器可以同时检测具有大监测窗口(35 Pa-700 kPa)的压力和应变信号。此外,该传感器透气且无炎症,因此可以直接层压到人皮肤上进行长期健康监测。考虑到可生物降解和皮肤舒适性的特点,这种传感器有望在皮肤贴合或可植入的健康监测设备中找到潜在的应用。