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用于呼吸周期监测和非接触传感应用的超快湿度传感器。

Ultra-Fast Moisture Sensor for Respiratory Cycle Monitoring and Non-Contact Sensing Applications.

作者信息

Mandal Suman, Mantilla Harold Mazo, Loganathan Kalaivanan, Faber Hendrik, Sharma Abhinav, Gedda Murali, Yengel Emre, Goswami Dipak Kumar, Heeney Martin, Anthopoulos Thomas D

机构信息

Physical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.

Organic Electronics Laboratory, Department of Physics, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

出版信息

Adv Mater. 2025 Feb;37(8):e2414005. doi: 10.1002/adma.202414005. Epub 2025 Jan 16.

Abstract

As human-machine interface hardware advances, better sensors are required to detect signals from different stimuli. Among numerous technologies, humidity sensors are critical for applications across different sectors, including environmental monitoring, food production, agriculture, and healthcare. Current humidity sensors rely on materials that absorb moisture, which can take some time to equilibrate with the surrounding environment, thus slowing their temporal response and limiting their applications. Here, this challenge is tackled by combining a nanogap electrode (NGE) architecture with chicked egg-derived albumen as the moisture-absorbing component. The sensors offer inexpensive manufacturing, high responsivity, ultra-fast response, and selectivity to humidity within a relative humidity range of 10-70% RH. Specifically, the egg albumen-based sensor showed negligible response to relevant interfering species and remained specific to water moisture with a room-temperature responsivity of 1.15 × 10. The nm-short interelectrode distance (circa 20 nm) of the NGE architecture enables fast temporal response, with rise/fall times of 10/28 ms, respectively, making the devices the fastest humidity sensors reported to date based on a biomaterial. By leveraging these features, non-contact moisture sensing and real-time respiratory cycle monitoring suitable for diagnosing chronic diseases such as sleep apnea, asthma, and pulmonary disease are demonstrated.

摘要

随着人机界面硬件的发展,需要更好的传感器来检测来自不同刺激的信号。在众多技术中,湿度传感器对于包括环境监测、食品生产、农业和医疗保健在内的不同领域的应用至关重要。当前的湿度传感器依赖于吸收水分的材料,这些材料需要一些时间来与周围环境达到平衡,从而减慢了它们的时间响应并限制了它们的应用。在此,通过将纳米间隙电极(NGE)结构与来源于鸡蛋的蛋清作为吸湿成分相结合,解决了这一挑战。这些传感器具有制造成本低、响应度高、响应超快以及在10-70%相对湿度范围内对湿度具有选择性等特点。具体而言,基于蛋清的传感器对相关干扰物质的响应可忽略不计,并且对水汽保持特异性,室温响应度为1.15×10。NGE结构的纳米级短电极间距(约20纳米)实现了快速的时间响应,上升/下降时间分别为10/28毫秒,使这些器件成为迄今为止报道的基于生物材料的最快的湿度传感器。通过利用这些特性,展示了适用于诊断诸如睡眠呼吸暂停、哮喘和肺病等慢性疾病的非接触式湿度传感和实时呼吸周期监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf24/11854870/e5ddac12da20/ADMA-37-2414005-g003.jpg

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