CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 101400, China.
School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Adv Sci (Weinh). 2022 Sep;9(25):e2202489. doi: 10.1002/advs.202202489. Epub 2022 Jun 27.
The kernmantle construction, a kind of braiding structure that is characterized by the kern absorbing most of the stress and the mantle protecting the kern, is widely employed in the field of loading and rescue services, but rarely in flexible electronics. Here, a novel kernmantle electronic braid (E-braid) for high-impact sports monitoring, is proposed. The as-fabricated E-braids not only demonstrate high strength (31 Mpa), customized elasticity, and nice machine washability (>500 washes) but also exhibit excellent electrical stability (>200 000 cycles) during stretching. For demonstration, the E-braids are mounted to different parts of the trampoline for athletes' locomotor behavior monitoring. Furthermore, the E-braids are proved to act as multifarious intelligent sports gear or wearable equipment such as electronic jump rope and respiration monitoring belt. This study expands the kernmantle structure to soft flexible electronics and then accelerates the development of quantitative analysis in modern sports industry and athletes' healthcare.
内核-外皮结构是一种编织结构,其特点是内核吸收大部分的力,外皮保护内核。这种结构在负载和救援服务领域得到了广泛应用,但在柔性电子领域却很少见。在这里,我们提出了一种用于高冲击运动监测的新型内核-外皮电子编织物(E-braid)。所制备的 E-braid 不仅具有高强度(31 MPa)、可定制的弹性和良好的机洗性(>500 次),而且在拉伸过程中还表现出优异的电稳定性(>200000 次循环)。为了进行演示,我们将 E-braid 安装在蹦床的不同部位,用于监测运动员的运动行为。此外,E-braid 还被证明可以用作各种智能运动装备或可穿戴设备,如电子跳绳和呼吸监测带。本研究将内核-外皮结构扩展到软柔性电子产品,从而加速了现代体育产业和运动员健康护理中的定量分析的发展。