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Highly Sensitive Room-Temperature Sensor Based on Nanostructured K2W7O22 for Application in the Non-Invasive Diagnosis of Diabetes

机译:基于纳米结构K2W7O22的高敏感室温传感器在非侵入性诊断糖尿病中的应用

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摘要

Diabetes is one of the most rapidly-growing chronic diseases in the world. Acetone, a volatile organic compound in exhaled breath, shows a positive correlation with blood glucose and has proven to be a biomarker for type-1 diabetes. Measuring the level of acetone in exhaled breath can provide a non-invasive, low risk of infection, low cost, and convenient way to monitor the health condition of diabetics. There has been continuous demand for the improvement of this non-invasive, sensitive sensor system to provide a fast and real-time electronic readout of blood glucose levels. A novel nanostructured K2W7O22 has been recently used to test acetone with concentration from 0 parts-per-million (ppm) to 50 ppm at room temperature. The results revealed that a K2W7O22 sensor shows a sensitive response to acetone, but the detection limit is not ideal due to the limitations of the detection system of the device. In this paper, we report a K2W7O22 sensor with an improved sensitivity and detection limit by using an optimized circuit to minimize the electronic noise and increase the signal to noise ratio for the purpose of weak signal detection while the concentration of acetone is very low.
机译:糖尿病是世界上最迅速增长的慢性疾病之一。丙酮,呼出气呼吸的挥发性有机化合物,显示出与血糖的正相关性,并且已被证明是1型糖尿病的生物标志物。测量呼气呼吸中丙酮水平可以提供无侵入性,低风险的感染,低成本,以及监测糖尿病患者健康状况的便捷方式。对这种非侵入性的敏感传感器系统的改进进行了不断的需求,以提供血糖水平的快速和实时的电子读数。最近,新型纳米结构K2W7O22已用于在室温下以0倍至每百万(PPM)至50ppm的浓度测试丙酮。结果表明,K2W7O22传感器显示对丙酮的敏感响应,但由于装置的检测系统的限制,检测极限并不理想。在本文中,我们通过使用优化的电路来报告具有改进的灵敏度和检测限的K2W7O22传感器,以最小化电子噪音,并在弱信号检测的目的下增加信号到噪声比,而丙酮的浓度非常低。

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