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Research On A hybrid porous carbon-decorated multi-layered graphene-based breathable and ultra-sensitive piezoresistive strain sensor for wearable physiological signal monitoring Got Featured On University and News Portals

Research On A hybrid porous carbon-decorated multi-layered graphene-based breathable and ultra-sensitive piezoresistive strain sensor for wearable physiological signal monitoring Got Featured On University and News Portals

The development of stretchable strain sensors incorporating electrodes enhanced with nanomaterials holds promise for revolutionizing wearable healthcare systems and human–machine interfaces, marking a significant shift in the landscape of sensing technologies for the next generation. Following this feat, a novel flexible and stretchable electrode material comprising hybridized metal–organic framework (MOF)-derived porous carbon (HPC) deposited on laser-engraved graphene (LEG) for piezoresistive wearable strain sensors is introduced. HPC provides compensation for microcrack formation on LEG through a slippage mechanism, mitigating the breakage that occurs during intense stretching actions. Furthermore, the flexible electrode was transferred to the breathable porous styrene–ethylene–butylene–styrene (PSEBS) substrate. PSEBS provides heat dissipation and sweat evaporation from the skin-sensor interface, which makes them an impregnable substrate to counteract local heating, thereby, improving the sensor’s reliability. The synergistic interplay between HPC and LEG fosters the formation of an enhanced conductive pathway, resulting in heightened sensitivity, with a maximum gauge factor of 575,542 and a lower limit of detection of 0.04%, surpassing its non-porous counterparts in terms of sensitivity, reliability, and comfort. To validate its efficacy, various demonstrations are presented, showcasing its ability to accurately capture full-range human body motions, monitor vital signs, and facilitate seamless human–machine interactions.


호흡과 같은 미세한 생체 신호부터 인체활동까지 모니터링 할 수 있는 하이브리드 나노다공성 탄소-다층 그래핀 기반 통기성을 갖는 초고감도 압저항 변형 센서


Web link:


https://doi.org/10.1016/j.cej.2024.158933


 


University Link:


https://www.kw.ac.kr/ko/life/research.jsp?BoardMode=view&DUID=49232&tpage=1&searchKey=1&searchVal=&srCategoryId= 


 


News article:


https://news.mt.co.kr/mtview.php?no=2025020312540613794


https://www.etnews.com/20250203000318


http://www.kyosu.net/news/articleView.html?idxno=130556


https://www.enewstoday.co.kr/news/articleView.html?idxno=2231920


https://www.veritas-a.com/news/articleView.html?idxno=540876


https://news.unn.net/news/articleView.html?idxno=574455


https://www.newsfreezone.co.kr/news/articleView.html?idxno=606926


https://www.popcornnews.net/news/articleView.html?idxno=72457


 

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