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제125회 대한화학회 학술발표회 및 총회 Self-Aligned and Conductive Patterns for Stretchable and Skin-Conformal Sensors

2020년 5월 25일 16시 37분 34초
MAT.P-893 이곳을 클릭하시면 발표코드에 대한 설명을 보실 수 있습니다.
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Material Chemistry
저자 및
Sungwon Hwang
Department of System Semiconductor Engineering, Sangmyung University, Korea
Two dimensional (2-D) atomic layers have several advantages such as flexibility in choosing substrates, easy fabrication, large package area, minimum change of components, enhanced expiration date, and reduced defects by oxygen blocking structure for smart sensor. The sensors with excellent flexibility and stretchability are crucial components that can provide health monitoring systems with the capability of continuously tracking physiological signals of human body without conspicuous uncomfortableness and invasiveness. The signals acquired by these sensors, such as body motion, heart rate, breath, skin temperature and metabolism parameter, are closely associated with personal health conditions. This review attempts to summarize the recent progress in flexible and stretchable sensors, concerning the detected health indicators, sensing mechanisms, functional materials, fabrication strategies, basic and desired features. The potential challenges and future perspectives of wearable health monitoring system are also briefly discussed. This approach can overcome the limitations by stretchable sensors and transfer of graphene, and make the skin temperature and metabolism parameter and smart sensors.
※ This work was carried out with the support of "Cooperative Research Program for Agriculture Science and Technology Development (Project No. PJ01337101)" Rural Development Administration, Republic of Korea.