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

机译:基于纳米结构的K2W7O22的高灵敏度室温传感器在糖尿病的无创诊断中的应用

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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:糖尿病是世界上发展最快的慢性疾病之一。丙酮是呼出气中的挥发性有机化合物,与血糖呈正相关,已被证明是1型糖尿病的生物标志物。测量呼出气中的丙酮水平可以提供一种非侵入性,低感染风险,低成本和方便的方式来监测糖尿病患者的健康状况。一直需要改进这种非侵入性,灵敏的传感器系统,以提供快速和实时的血糖水平电子读数。最近,一种新型的纳米结构的K2W7O22在室温下用于测试丙酮的浓度为百万分之0(ppm)至50 ppm。结果表明,K2W7O22传感器显示出对丙酮的敏感响应,但是由于设备检测系统的限制,检测极限并不理想。在本文中,我们报告了一种K2W7O22传感器,该传感器通过使用优化电路来最大程度地降低电子噪声并提高信噪比,从而改善了灵敏度和检测极限,从而在丙酮浓度非常低的情况下实现弱信号检测。

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