Marmo Alec C, Lott Lucas R, Pickett Jackson H, Koller Harrison E, Nitschke Brandon M, Grunlan Melissa A
Department of Materials Science and Engineering Texas A&M University, College Station, TX 77843-3003 (USA).
Department of Biomedical Engineering Texas A&M University, College Station, TX 77843-3003 (USA).
ACS Appl Polym Mater. 2023 Jan 13;5(1):775-783. doi: 10.1021/acsapm.2c01757. Epub 2022 Dec 21.
Flexible, dry skin electrodes represent a potentially superior alternative to standard Ag/AgCl metal electrodes for wearable devices used in long-term monitoring. Herein, such electrodes were formed using a facile method for dispersing carbon nanotubes (CNTs) in a silicone matrix using custom amphiphilic dispersive additives (DSPAs). Using only brief mixing and without the use of solvents or surface modification of CNTs, twelve poly(ethylene oxide)-silanes (PEO-SAs) of varying crosslinkability, architecture, siloxane tether length, and molar ratio of siloxane:PEO were combined with an addition cure silicone and CNTs. Nearly all PEO-SA modified silicone-CNT composites demonstrated improved conductivity compared to the unmodified composite. Best conductivities correlated to composites prepared with PEO-SAs that formed micelles of particular sizes (d ~ 200 - 300 nm) and coincided to PEO-SAs with a siloxane:PEO molar ratio of ~ 0.75 - 3.00. Superior dispersion of CNT by such PEO-SAs was exemplified by scanning electron microscopy (SEM). Advantageously, modified composites retained their moduli, rather than becoming more rigid. Resultant electrodes fabricated with modified composites showed skin-electrode impedance comparable to that of Ag/AgCl electrodes. Combined, these results demonstrate the potential of silicone-CNT composites prepared with PEO-SA DSPAs as flexible, dry electrodes as a superior alternative to traditional electrodes.
对于用于长期监测的可穿戴设备而言,柔性干皮肤电极可能是标准Ag/AgCl金属电极的一种更优替代方案。在此,通过一种简便方法制备了此类电极,该方法利用定制的两亲性分散添加剂(DSPAs)将碳纳米管(CNT)分散在硅氧烷基质中。仅通过短暂混合且不使用溶剂或对CNT进行表面改性,将十二种具有不同交联性、结构、硅氧烷链长度以及硅氧烷与聚环氧乙烷(PEO)摩尔比的聚环氧乙烷硅烷(PEO-SA)与加成固化硅氧烷和CNT相结合。与未改性的复合材料相比,几乎所有PEO-SA改性的硅氧烷-CNT复合材料的导电性都有所提高。最佳导电性与用形成特定尺寸(直径约200 - 300 nm)胶束的PEO-SA制备的复合材料相关,并且与硅氧烷:PEO摩尔比约为0.75 - 3.00的PEO-SA相符。通过扫描电子显微镜(SEM)证明了此类PEO-SA对CNT具有优异的分散性。有利的是,改性复合材料保持了其模量,而不是变得更硬。用改性复合材料制成的最终电极显示出与Ag/AgCl电极相当的皮肤-电极阻抗。综合来看,这些结果证明了用PEO-SA DSPAs制备的硅氧烷-CNT复合材料作为柔性干电极替代传统电极的潜力。