导电体
材料科学
制作
血液循环
纳米技术
生物医学工程
袜子
导电的
电接点
磨损(机械)
全身循环
复合材料
可穿戴计算机
电子设备和系统的热管理
可穿戴技术
作者
Zanxin Zhou,Shaohua Li,Bo Wang,Guosheng Wang,Jie Cheng,Chun Feng,H. Li,Yewang Su
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-01-05
卷期号:20 (2): 2424-2434
标识
DOI:10.1021/acsnano.5c19901
摘要
Microcurrent therapy (MCT) can effectively prevent various diseases caused by prolonged standing/sedentary activities through promoting blood circulation and metabolism. However, existing MCT devices face challenges in balancing the optimal therapeutic efficacy and patient comfort due to the limitations of materials and structural design. Here, we propose a conductive fabric with a multilevel knitted structure for MCT, integrating superior conductivity, breathability, and thermal comfort. To ensure optimal electrical performance, an analytical model for the resistance-strain relationship of conductive fabrics with multilevel structure is established. Furthermore, the experimental results also demonstrate that the multilevel structure exhibits excellent repeatability, wash resistance, and abrasion resistance. As a device-level example, conductive fabrics are utilized in the fabrication of wearable MCT socks, which exhibit characteristics of large-area treatment and portability. Finally, we prove the effect of MCT socks on the promotion of blood circulation and metabolism through animal experiments. The development of conductive fabrics represents a significant advancement in therapeutic platforms combining outstanding breathability, comfort, and electrical performance.
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