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A portable optical human sweat sensor

机译:便携式光学人体汗液传感器

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We describe the use of HNQ (2-hydroxy-1,4-naphthoquinone or Lawsone) as a potential sweat sensor material to detect the hydration levels of human beings. We have conducted optical measurements using both artificial and human sweat to validate our approach. We have determined that the dominant compound that affects HNQ absorbance in artificial sweat is sodium. The presence of lactate decreases the reactivity of HNQ while urea promotes more interactions of sodium and potassium ions with HNQ. The interactions between the hydroxyl group of HNQ and the artificial sweat components (salts, lactic acid, and urea) were investigated comprehensively. We have also proposed and developed a portable diode laser absorption sensor system that converts the absorbance at a particular wavelength range (at 455 ± 5 nm, where HNQ has an absorbance peak) into light intensity measurements via a photocell. The absorbance intensity values obtained from our portable sensor system agrees within 10.4% with measurements from a laboratory based ultraviolet-visible spectrometer. Findings of this research will provide significant information for researchers who are focusing on real-time, in-situ hydration level detection.
机译:我们描述使用HNQ(2-羟基-1,4-萘醌或Lawsone)作为潜在的汗液传感器材料来检测人类的水合水平。我们已经使用人工和人类汗液进行了光学测量,以验证我们的方法。我们已经确定影响人造汗中HNQ吸收的主要化合物是钠。乳酸的存在降低了HNQ的反应性,而尿素则促进了钠和钾离子与HNQ的更多相互作用。全面研究了HNQ的羟基与人造汗液成分(盐,乳酸和尿素)之间的相互作用。我们还提出并开发了一种便携式二极管激光吸收传感器系统,该系统可将特定波长范围(在455±5 nm,HNQ具有吸光度峰值)处的吸光度转换为通过光电管的光强度测量值。从我们的便携式传感器系统获得的吸光度值与实验室紫外可见光谱仪的测量值相差10.4%。这项研究的结果将为致力于实时,原位水化水平检测的研究人员提供重要信息。

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