共形矩阵
材料科学
电极
胶粘剂
刚度
弯曲
薄膜
制作
复合材料
弹性体
角质层
光电子学
水泡
抗弯刚度
图层(电子)
生物医学工程
纳米技术
物理化学
化学
病理
替代医学
医学
作者
Robert A. Nawrocki,Hanbit Jin,Sunghoon Lee,Tomoyuki Yokota,Masaki Sekino,Takao Someya
标识
DOI:10.1002/adfm.201803279
摘要
Abstract Accurate and unobtrusive monitoring of surface biopotentials is of paramount importance for physiological studies and wearable healthcare applications. Thin, light‐weight, and conformal bioelectrodes are highly desirable for biopotential monitoring. This report demonstrates the fabrication of sub‐300 nm thin, dry electrodes that are self‐adhesive and conformable to complex 3D biological surfaces and thus capable of excellent quality of biopotential (surface electromyogram and surface electrocardiogram) recordings. Measurements reveal single‐day stability of up to 10 h. In addition, the bending stiffness of the sensor is calculated to be ≈0.33 pN m 2 , which is comparable to stratum corneum, the uppermost layer of human skin, and this stiffness is over two orders of magnitude lower than the bending stiffness of a 3.0 µm thin sensor. Laminated on a prestretched elastomer, when relaxed, the sensor forms wrinkles with a period and amplitude equal to 17 and 4 µm, respectively, which these values agree with theoretical calculations. Finally, with skin vibrations of up to ≈15 µm, the sensor exhibits motion artifact‐less monitoring of surface biopotentials, in contrast to a wet adhesive electrode that shows much greater influence.
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