激光与光电子学进展, 2025, 62 (13): 1300008, 网络出版: 2025-06-25
基于荧光测温技术可穿戴温度传感器研究进展【增强内容出版】
Research Progress of Wearable Temperature Sensors Based on Fluorescence Thermometric Technology
可穿戴设备 荧光测温 光纤传感器 温度传感器 可穿戴测温 wearable device fluorescence thermometry fiber optic sensor temperature sensor wearable thermometry
AI一图读本文 AI语音精读 AI语音超短摘要
注:本部分内容由 AI 自动生成,仅供您参考。对于您使用本站 AI 自动生成内容所产生的一切后果,本网站及平台运营方概不承担任何商业和法律责任,请您知悉。
摘要
近年来,随着科技的飞速发展,温度测量技术不断演进,其中荧光测温技术以其独特的优势和潜力,在科研与工业应用中逐渐占据重要地位。聚焦于荧光测温技术的基本原理、最新进展及其在测温服装设计中的创新应用,旨在为相关领域的研究人员和工程师提供参考与启示。首先,深入剖析了荧光测温技术的基本原理。随后,综述了荧光测温探头制备技术的最新研究成果。在测温服装设计领域,荧光测温技术的引入为智能穿戴设备的发展开辟了新的道路。通过将荧光测温传感器巧妙地嵌入衣物面料,可以实现对人体体温的实时监测与记录。综上所述,荧光测温技术作为一项前沿的温度测量技术,在测温服装领域展现出了巨大的应用潜力和价值。随着技术的不断进步和创新,相信荧光测温技术将在更多领域得到广泛应用,为人类社会的发展贡献更多力量。
Abstract
In recent years, owing to the rapid development of science and technology, thermometric technologies have evolved, among which fluorescence thermometric technology has gradually garnered significant attention in academia and industry because of its unique advantages and potential. This paper focuses on the basic principles, latest progress, and innovative application of fluorescence thermometric technology in the design of thermometric clothing to provide reference and inspiration for researchers and engineers in related fields. First, we present the basic principles of fluorescence thermometric technology. Subsequently, we review the latest results achieved using fluorescence thermometric probe preparation technology. In thermometric clothing design, the introduction of fluorescence thermometric technology has enabled new developments of smart wearable devices. By cleverly embedding fluorescent temperature sensors into clothing fabrics, real-time monitoring and recording of human body temperature can be realized. In summary, fluorescence thermometric technology, as a sophisticated thermometric technology, demonstrates significant application potential and value in the field of thermometric clothing. As technological innovations continues to develop, fluorescence thermometric technology is anticipated to be widely used in more fields and thus contributes to the development of human society.
温宇航, 郝天煦, 梅雪蕊, 黄龙, 何天虹, 牛丽, 许君, 张诚. 基于荧光测温技术可穿戴温度传感器研究进展[J]. 激光与光电子学进展, 2025, 62(13): 1300008. Yuhang Wen, Tianxu Hao, Xuerui Mei, Long Huang, Tianhong He, Li Niu, Jun Xu, Cheng Zhang. Research Progress of Wearable Temperature Sensors Based on Fluorescence Thermometric Technology[J]. Laser & Optoelectronics Progress, 2025, 62(13): 1300008.