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Sensitive Wearable Temperature Sensor with Seamless Monolithic Integration

机译:具有无缝单片集成的灵敏可穿戴温度传感器

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摘要

Accurate temperature field measurement provides critical information in many scientific problems. Herein, a new paradigm for highly sensitive, flexible, negative temperature coefficient (NTC) thermistor-based artificial skin is reported, with the highest temperature sensing ability reported to date among previously reported NTC thermistors. This artificial skin is achieved through the development of a novel monolithic laser-induced reductive sintering scheme and unique monolithic structures. The unique seamless monolithic structure simultaneously integrates two different components (a metal electrode and metal oxide sensing channel) from the same material at ambient pressure, which cannot be achieved by conventional heterogeneous integration through multiple, complex steps of photolithography or vacuum deposition. In addition to superior performance, electronic skin with high temperature sensitivity can be fabricated on heat-sensitive polymer substrates due to the low-temperature requirements of the process. As a proof of concept, temperature-sensitive artificial skin is tested with conformally attachable physiological temperature sensor arrays in the measurement of the temperatures of exhaled breath for the early detection of pathogenic progression in the respiratory system. The proposed highly sensitive flexible temperature sensor and monolithic selective laser reductive sintering are expected to greatly contribute to the development of essential components in various emerging research fields, including soft robotics and healthcare systems.
机译:准确的温度场测量可为许多科学问题提供关键信息。本文中,报道了基于高灵敏度,柔性,负温度系数(NTC)热敏电阻的人造皮肤的新范例,在先前报道的NTC热敏电阻中,迄今为止报道的温度感测能力最高。通过开发新型的整体激光诱导还原烧结方案和独特的整体结构,可以实现这种人造皮肤。独特的无缝整体结构同时在环境压力下集成了同一材料的两个不同组件(金属电极和金属氧化物感测通道),而传统的异构集成则无法通过多个复杂的光刻或真空沉积步骤来实现。除了优异的性能外,由于该工艺的低温要求,因此可以在热敏聚合物基材上制造具有高温敏感性的电子皮肤。作为概念的证明,对温度敏感的人造皮肤用适形连接的生理温度传感器阵列进行测试,以测量呼出气的温度,以及早发现呼吸系统中的病原体进程。预计所提出的高灵敏度柔性温度传感器和整体式选择性激光还原烧结将极大地促进各种新兴研究领域(包括软机器人和医疗保健系统)中基本组件的开发。

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