State Key Laboratory of Digital Medical Engineering, Jiangsu Key Laboratory for Biomaterials and Devices, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
Southeast University-Monash University Joint Graduate School, Suzhou 215123, China.
Nano Lett. 2024 Sep 11;24(36):11269-11278. doi: 10.1021/acs.nanolett.4c02907. Epub 2024 Aug 29.
We introduce the FlexoSERS sensor, which is notable for its high stretchability, sensitivity, and patternability. Featuring a hierarchically oriented jellyfish-like architecture constructed from stretchable gold nanowires, this sensor provides an ultrasensitive SERS signal even under 50% strain, with an enhancement factor (EF) of 3.3 × 10. Impressively, this heightened performance remains consistently robust across 2,500 stretch-release cycles. The integration of nanowires with 3D-printed hydrogel enables a customizable FlexoSERS sensor, facilitating localized sweat collection and detection. The FlexoSERS sensor successfully detects and quantifies uric acid (UA) in both artificial and human sweat and functions as a pH sensor with repeatability and sensitivity across a pH range of 4.2-7.8, enabling real-time sweat monitoring during exercise. In summary, the rational architectural design, scalable fabrication process, and hydrogel integration collectively position this nanowire-based FlexoSERS sensor as a highly promising platform for customizable wearable sweat diagnostics.
我们介绍了 FlexoSERS 传感器,它具有高拉伸性、灵敏度和可成型性的特点。该传感器采用分层取向的水母状结构,由可拉伸的金纳米线构成,即使在 50%的应变下,也能提供超灵敏的 SERS 信号,增强因子(EF)为 3.3×10。令人印象深刻的是,这种性能提升在 2500 次拉伸-释放循环中仍然保持稳健。纳米线与 3D 打印水凝胶的集成实现了可定制的 FlexoSERS 传感器,便于局部汗液收集和检测。FlexoSERS 传感器成功地检测和量化了人工和人体汗液中的尿酸(UA),并作为 pH 传感器在 4.2-7.8 的 pH 范围内具有重复性和灵敏度,能够在运动过程中实现实时汗液监测。总之,这种基于纳米线的 FlexoSERS 传感器的合理架构设计、可扩展的制造工艺以及水凝胶的集成使其成为一种极具前景的可定制的、用于穿戴式汗液诊断的平台。