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A time sequential microfluid sensor with Tesla valve channels 被引量:1
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作者 Pengcheng Zhao Haobin Wang +3 位作者 Yaozheng Wang Wei Zhao Mengdi Han Haixia Zhang 《Nano Research》 SCIE EI CSCD 2023年第9期11667-11673,共7页
The concentration of biomarkers in sweat can be used to evaluate human health,making efficient sweat sensing a focus of research.While flow channel design is often used to detect sweat velocity,it is rarely incorporat... The concentration of biomarkers in sweat can be used to evaluate human health,making efficient sweat sensing a focus of research.While flow channel design is often used to detect sweat velocity,it is rarely incorporated into the sensing of biomarkers,limiting the richness of sensing results.In this study,we report a time sequential sensing scheme for uric acid in sweat through a sequential design of Tesla valve channels.Graphene electrodes for detecting uric acid and directional Tesla valve flow channels were fabricated using laser engraving technology to realize time sequential sensing.The performance of the channels was verified through simulation.The time sequential detection of uric acid concentration in sweat can help researchers improve the establishment of human health management systems through flexible wearable devices. 展开更多
关键词 time sequential sensing uric acid tesla valves laser engraving technology
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