材料科学
缓冲器(光纤)
复合材料
人体运动
复合数
导电体
耐久性
纳米技术
粘附
弯曲
光电子学
图层(电子)
拉伤
可穿戴技术
压力(语言学)
磷酸盐缓冲盐水
可穿戴计算机
热塑性聚氨酯
数码产品
柔性电子器件
聚合物
结构健康监测
灵敏度(控制系统)
生物传感器
纤维
响应时间
胶粘剂
相容性(地球化学)
作者
Lu Tang,Kechen Zhou,Qirui Wu,Sinan Feng,Wenchuan Wang,Ji-an Li,Sirui Tan,Dawen Zeng,Lu Tang,Kechen Zhou,Qirui Wu,Sinan Feng,Wenchuan Wang,Ji-an Li,Sirui Tan,Dawen Zeng
出处
期刊:Langmuir
[American Chemical Society]
日期:2025-11-14
卷期号:41 (46): 31387-31399
标识
DOI:10.1021/acs.langmuir.5c04436
摘要
Crack-structured flexible strain sensors have attracted considerable interest in the field of flexible electronics due to their notable sensitivity and stretchability. However, crack propagation in these sensors restricts the strain range and compromises compatibility by collapsing the conductive network and degrading the interfacial adhesion. This research proposes a PVA optimization strategy based on the layer-by-layer assembly method, leading to the development of a PVA buffer layer-reinforced TPU @ MXene (MPTPU) fiber strain sensor. The incorporation of the PVA buffer layer improves interfacial adhesion and effectively alleviates stress concentration, thus broadening the effective sensing range of MPTPU. Additionally, hydrogen bonding within MPTPU improves the uniformity and adhesion of the conductive coating, enhancing the interfacial compatibility. The carefully engineered multilayer composite structure significantly boosts the sensor's performance and stability, exhibiting a sensitivity of 12.8, 50% stretchability, a detection threshold of 0.1%, and durability exceeding 10,000 stretching cycles. Furthermore, MPTPU demonstrates effective bending sensing performance and washability, making it well-suited for integration into textiles. The strain sensor accurately detects a wide range of human motions. With these advantages, such sensors hold great promise for applications in motion detection, health management, and wearable smart devices.
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