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刺激响应型智能材料在医疗保健可穿戴技术中的应用综述:回顾、展望与前瞻。

A Review of Stimuli-Responsive Smart Materials for Wearable Technology in Healthcare: Retrospective, Perspective, and Prospective.

机构信息

Department of Engineering and Applied Sciences, University of Bergamo, Viale Marconi 5, 24044 Dalmine, Italy.

Department of Engineering, University of Messina, Contrada di Dio, S. Agata, 98166 Messina, Italy.

出版信息

Molecules. 2022 Sep 5;27(17):5709. doi: 10.3390/molecules27175709.

Abstract

In recent years thanks to the Internet of Things (IoT), the demand for the development of miniaturized and wearable sensors has skyrocketed. Among them, novel sensors for wearable medical devices are mostly needed. The aim of this review is to summarize the advancements in this field from current points of view, focusing on sensors embedded into textile fabrics. Indeed, they are portable, lightweight, and the best candidates for monitoring biometric parameters. The possibility of integrating chemical sensors into textiles has opened new markets in smart clothing. Many examples of these systems are represented by color-changing materials due to their capability of altering optical properties, including absorption, reflectance, and scattering, in response to different external stimuli (temperature, humidity, pH, or chemicals). With the goal of smart health monitoring, nanosized sol-gel precursors, bringing coupling agents into their chemical structure, were used to modify halochromic dyestuffs, both minimizing leaching from the treated surfaces and increasing photostability for the development of stimuli-responsive sensors. The literature about the sensing properties of functionalized halochromic azo dyestuffs applied to textile fabrics is reviewed to understand their potential for achieving remote monitoring of health parameters. Finally, challenges and future perspectives are discussed to envisage the developed strategies for the next generation of functionalized halochromic dyestuffs with biocompatible and real-time stimuli-responsive capabilities.

摘要

近年来,由于物联网(IoT)的发展,对小型化和可穿戴传感器的需求急剧增加。其中,对可穿戴医疗设备的新型传感器的需求最大。本篇综述的目的是从当前的角度总结该领域的进展,重点关注嵌入纺织面料中的传感器。事实上,它们具有便携、轻巧的特点,是监测生物特征参数的最佳选择。将化学传感器集成到纺织品中的可能性为智能服装开辟了新的市场。这些系统的许多例子都是通过变色材料来代表的,因为它们能够改变光学性质,包括吸收、反射和散射,以响应不同的外部刺激(温度、湿度、pH 值或化学物质)。为了实现智能健康监测,纳米级溶胶-凝胶前体将偶联剂引入其化学结构中,用于修饰变色偶氮染料,既能最小化从处理表面浸出,又能提高光稳定性,从而开发出对刺激有响应的传感器。综述了应用于纺织面料的功能化变色偶氮染料的传感特性,以了解它们在实现远程健康参数监测方面的潜力。最后,讨论了挑战和未来展望,以期为下一代具有生物相容性和实时刺激响应能力的功能化变色染料设想开发策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8935/9457686/f35b766d72c2/molecules-27-05709-g001.jpg

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