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基于定制除湿器实现的单壁碳纳米管-二氧化钛复合材料的呼气丙酮传感

Breath Acetone Sensing Based on Single-Walled Carbon Nanotube-Titanium Dioxide Hybrids Enabled by a Custom-Built Dehumidifier.

作者信息

Hwang Sean I, Chen Hou-Yu, Fenk Courtney, Rothfuss Michael A, Bocan Kara N, Franconi Nicholas G, Morgan Gregory J, White David L, Burkert Seth C, Ellis James E, Vinay Miranda L, Rometo David A, Finegold David N, Sejdic Ervin, Cho Sung Kwon, Star Alexander

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.

Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, United States.

出版信息

ACS Sens. 2021 Mar 26;6(3):871-880. doi: 10.1021/acssensors.0c01973. Epub 2021 Mar 15.

Abstract

Acetone is a metabolic byproduct found in the exhaled breath and can be measured to monitor the metabolic degree of ketosis. In this state, the body uses free fatty acids as its main source of fuel because there is limited access to glucose. Monitoring ketosis is important for type I diabetes patients to prevent ketoacidosis, a potentially fatal condition, and individuals adjusting to a low-carbohydrate diet. Here, we demonstrate that a chemiresistor fabricated from oxidized single-walled carbon nanotubes functionalized with titanium dioxide (SWCNT@TiO) can be used to detect acetone in dried breath samples. Initially, due to the high cross sensitivity of the acetone sensor to water vapor, the acetone sensor was unable to detect acetone in humid gas samples. To resolve this cross-sensitivity issue, a dehumidifier was designed and fabricated to dehydrate the breath samples. Sensor response to the acetone in dried breath samples from three volunteers was shown to be linearly correlated with the two other ketone bodies, acetoacetic acid in urine and β-hydroxybutyric acid in the blood. The breath sampling and analysis methodology had a calculated acetone detection limit of 1.6 ppm and capable of detecting up to at least 100 ppm of acetone, which is the dynamic range of breath acetone for someone with ketosis. Finally, the application of the sensor as a breath acetone detector was studied by incorporating the sensor into a handheld prototype breathalyzer.

摘要

丙酮是呼出气体中发现的一种代谢副产物,可以通过测量它来监测酮症的代谢程度。在这种状态下,由于获取葡萄糖的途径有限,身体将游离脂肪酸作为主要燃料来源。监测酮症对于I型糖尿病患者预防酮症酸中毒(一种可能致命的病症)以及适应低碳水化合物饮食的个体来说很重要。在这里,我们证明了一种由用二氧化钛功能化的氧化单壁碳纳米管(SWCNT@TiO)制成的化学电阻器可用于检测干燥呼气样本中的丙酮。最初,由于丙酮传感器对水蒸气的交叉敏感性高,该丙酮传感器无法检测潮湿气体样本中的丙酮。为了解决这种交叉敏感性问题,设计并制造了一种除湿器来使呼气样本脱水。来自三名志愿者的干燥呼气样本中丙酮的传感器响应与另外两种酮体(尿液中的乙酰乙酸和血液中的β-羟基丁酸)呈线性相关。该呼气采样和分析方法的计算丙酮检测限为1.6 ppm,能够检测高达至少100 ppm的丙酮,这是酮症患者呼气丙酮的动态范围。最后,通过将该传感器集成到手持式原型呼气酒精测试仪中,研究了该传感器作为呼气丙酮检测器的应用。

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