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CO2 flow meter for electronics

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1. Wang Yans research group Sci. Adv. 10 μ m ultra-thin, breathable, self-adhesive and tough hydrogel electronic electrode ..

Wang Yans research group has jointly developed a 10 micron thick nano grid enhanced breathable hydrogel skin sensor, which can achieve high-quality electrophysiological signal monitoring for 8 consecutive days. The specific introduction is as follows: R&D background: Hydrogel skin bioelectronic devices have great potential in health related applications such as human health monitoring, human-computer interface, and precision treatment, but the preparation of thin, tough, breathable hydrogel sensors that can self adhere to human skin for long-term daily use (>1 week) is facing challenges. R&D team: Wang Yan from Guangdong Israel Institute of Technology, Takao Someya from the University of Tokyo, and Professor Wang Chunyas research group from China University of Petroleum (Beijing). R&D achievements: material and structure design: design gelatin thermosensitive phase change hydrogel material. Realize ultra-thin toughness characteristics through nano grid reinforcement structure. Performance characteristics: thickness: the thickness of the hydrogel skin electrode is as low as 10 microns. Mechanical performance: exhibiting excellent mechanical robustness. Adhesion: Has good skin adhesion. Breathability: Good breathability. Anti dehydration performance: Excellent anti dehydration performance. Monitoring capability: Under daily wearing conditions, it can achieve high fidelity long-term continuous monitoring of human electrocardiogram, electromyography, motor conduction velocity, electrooculography, electroencephalography, auditory brainstem response, visual evoked potential and other signals,

CO2 flow meter for electronics|thermal flow meter
and can achieve high-quality electrophysiological signal monitoring for 8 consecutive days. Paper publication: The related work titled "A 10 micrometer thick nanomesh reinforced gas permeable hydrogel skin sensor for long-term electrophysiological monitoring" was published in Science Advances. The original link is: https://www.science.org/doi/10.1126/sciadv.adj5389 Introduction to Dr. Wang Yan: Educational background: Graduated with a PhD from Monash University in Australia in 2018, and completed postdoctoral research in the Department of Electronics and Electrical Engineering at the University of Tokyo in Japan in 2021. Work experience: Joined the Department of Chemical Engineering at Guangdong Israel Institute of Technology in November 2021 as an associate professor, independent PI, and doctoral supervisor. Academic achievements: Top academic journals in the field of flexible electronics, such as Science、Nature Electronics、Science Advances、PNAS、Chemical Society Reviews、Advanced Energy Materials、ACS Nano、Materials Horizons、Advanced Functional Materials、Advanced Energy Materials、Nanoscale Horizons More than 30 papers have been published, with a Google H-factor of 22. Authorize one Australian patent. Received awards such as the 2018 National Outstanding Self funded Student Scholarship. The relevant research results have been highlighted by well-known media outlets such as CNN, Science, Nature Materials, mainstream Australian media such as Herald Sun and SBS Evening News, and Japanese daily industrial news. Research direction: At the Israel Institute of Technology in Guangdong, the main research direction of Wang Yans research group is flexible material design and wearable electronic development, with the aim of achieving

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