MXene基可穿戴传感器的制备及其在运动领域的应用

Fabrication of MXene-Based wearable sensors and their applications in sports science

  • 摘要: 鉴于运动员与运动爱好者对于精准掌握自身生理状态的需求日益增长,以期实现训练的优化与运动表现的提升,同时减少运动损伤的风险,传统的监测手段,如表面肌电图(sEMG)和三维运动捕捉技术,因穿戴不适和对环境条件的严格要求而限制了其广泛应用。近年来,基于MXene材料的柔性传感器因其卓越的生物兼容性、机械柔韧性和电导性,展现出在可穿戴设备领域的巨大潜力。这些传感器能够紧密贴合人体皮肤,实现对运动过程中的肌电信号、生理参数等关键信息的实时监测。本文旨在综合评述MXene基柔性传感器在运动科学领域的应用前景,探讨其在肢体动作捕捉、生理参数监测以及其他潜在功能方面的应用,并深入分析当前MXene基传感器在实际应用中所面临的技术挑战和限制因素。通过对现有文献的系统性回顾,本文旨在为未来的研究方向提供指导,并为运动科学领域的技术进步提供理论支持。

     

    Abstract: Given the increasing demand from athletes and fitness enthusiasts for accurate monitoring of physiological states to optimize training, enhance performance, and reduce the risk of injuries, traditional methods such as surface electromyography (sEMG) and three-dimensional motion capture are limited by discomfort and strict environmental requirements. Recently, flexible sensors made from MXene materials have shown great promise in wearable technology due to their excellent biocompatibility, mechanical flexibility, and conductivity. These sensors can closely adhere to the skin, allowing for real-time monitoring of essential data, including electromyographic signals and physiological parameters during physical activities. This review aims to assess the potential applications of MXene-based flexible sensors in sports science, focusing on their roles in motion capture, physiological monitoring, and other functionalities. It will also analyze the technical challenges and limitations facing these sensors in practical applications. Through a systematic review of the existing literature, this study seeks to guide future research directions and support advancements in the field of sports science.

     

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