Gas‐Permeable Highly Sensitive Nanomesh Humidity Sensor for Continuous Measurement of Skin Humidity

Wenqing Wang, M. O. G. Nayeem, Haoyang Wang, Chunya Wang, Jae Joon Kim, Binghao Wang, Sunghoon Lee, T. Yokota, T. Someya
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引用次数: 6

Abstract

On‐skin humidity sensors can be used to measure the sweat rate on the human skin surface. However, it is challenging to realize a precise, long‐term skin humidity measurement. The main challenge is to develop an on‐skin humidity sensor that has gas permeability, high sensitivity, and flexibility simultaneously. Porous materials and electrodes can enhance the properties of the humidity sensor for fulfilling continuous monitoring. Herein, a humidity sensor composed of nanomesh Au electrodes and nanomesh humidity‐sensitive materials, is reported. The porous structure makes the sensor flexible and gas permeable, increases the surface area, and leads to high sensitivity. The sensor has a high sensitivity of 640 000% in the relative‐humidity range of over 40–100%, together with a gas permeability similar to that of an open environment. The gas permeability suppresses the skin inflammation, endows natural evaporation of sweat, and brings an identical condition with bare skin. To evaluate the utility of the nanomesh sensor, on‐skin humidity measurements are performed, and the humidity change due to sweating after exercise is recorded.
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用于连续测量皮肤湿度的透气性高灵敏度纳米网格湿度传感器
皮肤湿度传感器可用于测量人体皮肤表面的出汗率。然而,实现精确、长期的皮肤湿度测量是具有挑战性的。主要的挑战是开发一种同时具有透气性、高灵敏度和灵活性的皮肤湿度传感器。多孔材料和电极可以增强湿度传感器的性能,实现连续监测。本文报道了一种由纳米孔金电极和纳米孔湿敏材料组成的湿度传感器。多孔结构使传感器具有柔韧性和透气性,增加了表面积,并导致高灵敏度。该传感器在相对湿度超过40-100%的范围内具有64000%的高灵敏度,同时具有类似于开放环境的透气性。透气性抑制皮肤炎症,使汗液自然蒸发,带来与裸露皮肤相同的状态。为了评估纳米传感器的实用性,进行了皮肤湿度测量,并记录了运动后出汗引起的湿度变化。
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