Department of Emerging Materials Science , Daegu Gyeongbuk Institute of Science & Technology (DGIST) , 333, Techno Jungang-daero, Hyeonpung-myeon, Dalseong-gun, Daegu 711-873 , Republic of Korea.
ACS Appl Mater Interfaces. 2019 Nov 27;11(47):44758-44763. doi: 10.1021/acsami.9b17584. Epub 2019 Nov 14.
The importance of monitoring the condition of skin is increasing as its relevance to health is becoming more well understood. Inappropriate humidity levels can cause atopic dermatitis or hair loss. However, conventional film substrates used in electronic skin monitoring devices cause accumulation of sweat or gas between the device and biological tissue, leading to negative effects in long-term humidity measurements. Thus, real-time measurements of skin humidity over long periods are difficult using conventional film devices. Here, a breathable nanomesh humidity sensor that can monitor skin humidity for a long time is developed by using biocompatible materials such as gold, poly(vinyl alcohol), and Parylene C. The sensor presents excellent gas and sweat permeability and precisely detects the humidity level of an object for a long time. This study demonstrates the successful real-time detection of the humidity level from human skin and also detects the relative humidity of a plant surface over a prolonged period. This sensor is expected to have wide applicability for cultivating delicate plants as well as to reveal correlations between skin humidity and disease for biomedical applications.
随着人们对皮肤与健康之间相关性的认识不断加深,监测皮肤状况的重要性日益凸显。不适当的湿度水平可能会导致特应性皮炎或脱发。然而,电子皮肤监测设备中使用的传统薄膜基底会导致设备和生物组织之间积聚汗液或气体,从而对长期湿度测量产生负面影响。因此,使用传统薄膜设备很难进行长时间的皮肤湿度实时测量。在这里,使用金、聚乙烯醇和聚对二甲苯 C 等生物相容性材料开发了一种透气纳米网湿度传感器,可以长时间监测皮肤湿度。该传感器具有出色的透气性和排汗性,可以长时间精确检测物体的湿度水平。本研究成功地实时检测了人体皮肤的湿度水平,并长时间检测了植物表面的相对湿度。该传感器有望广泛应用于种植娇嫩植物,以及揭示皮肤湿度与疾病之间的相关性,以用于生物医学应用。