Department of Energy and Materials Engineering, Dongguk University, 30 Pildong-ro, 1-gil, Jung-gu, Seoul 04620, Republic of Korea.
Department of Advanced Battery Convergence Engineering, Dongguk University, 30 Pildong-ro, 1-gil, Jung-gu, Seoul 04620, Republic of Korea.
Sensors (Basel). 2023 Feb 20;23(4):2359. doi: 10.3390/s23042359.
Stretchable yarn/fiber electronics with conductive features are optimal components for different wearable devices. This paper presents the construction of coil structure-based carbon nanotube (CNT)/polymer fibers with adjustable piezoresistivity. The composite unit fiber is prepared by wrapping a conductive carbon CNT sheath onto an elastic spandex core. Owing to the helical coil structure, the resultant CNT/polymer composite fibers are highly stretchable (up to approximately 300%) without a noticeable electrical breakdown. More specifically, based on the difference in the coil index (which is the ratio of the coil diameter to the diameter of the fiber within the coil) according to the polymeric core fiber (spandex or nylon), the composite fiber can be used for two different applications (i.e., as strain sensors or supercapacitors), which are presented in this paper. The coiled CNT/spandex composite fiber sensor responds sensitively to tensile strain. The coiled CNT/nylon composite fiber can be employed as an elastic supercapacitor with excellent capacitance retention at 300% strain.
具有导电性能的可拉伸纱线/纤维是各种可穿戴设备的理想组件。本文介绍了具有可调压阻性的基于线圈结构的碳纳米管(CNT)/聚合物纤维的构建。复合单元纤维是通过将导电碳 CNT 护套包裹在弹性氨纶芯上制备的。由于螺旋线圈结构,所得的 CNT/聚合物复合纤维具有高拉伸性(高达约 300%),而不会出现明显的电击穿。更具体地说,根据聚合物芯纤维(氨纶或尼龙)的线圈指数(即线圈直径与线圈内纤维直径的比值)的差异,复合纤维可用于两种不同的应用(即作为应变传感器或超级电容器),本文对此进行了介绍。螺旋 CNT/氨纶复合纤维传感器对拉伸应变敏感。螺旋 CNT/尼龙复合纤维可用作弹性超级电容器,在 300%应变下具有出色的电容保持率。