Fu Yongming, He Haoxuan, Zhao Tianming, Dai Yitong, Han Wuxiao, Ma Jie, Xing Lili, Zhang Yan, Xue Xinyu
1School of Physics, University of Electronic Science and Technology of China, Chengdu, 610054 People's Republic of China.
2College of Physics and Electronics Engineering, Shanxi University, Taiyuan, 030006 People's Republic of China.
Nanomicro Lett. 2018;10(4):76. doi: 10.1007/s40820-018-0228-y. Epub 2018 Nov 12.
The increasing morbidity of internal diseases poses serious threats to human health and quality of life. Exhaled breath analysis is a noninvasive and convenient diagnostic method to improve the cure rate of patients. In this study, a self-powered breath analyzer based on polyaniline/polyvinylidene fluoride (PANI/PVDF) piezo-gas-sensing arrays has been developed for potential detection of several internal diseases. The device works by converting exhaled breath energy into piezoelectric gas-sensing signals without any external power sources. The five sensing units in the device have different sensitivities to various gas markers with concentrations ranging from 0 to 600 ppm. The working principle can be attributed to the coupling of the in-pipe gas-flow-induced piezoelectric effect of PVDF and gas-sensing properties of PANI electrodes. In addition, the device demonstrates its use as an ethanol analyzer to roughly mimic fatty liver diagnosis. This new approach can be applied to fabricating new exhaled breath analyzers and promoting the development of self-powered systems.
内科疾病发病率的不断上升对人类健康和生活质量构成了严重威胁。呼气分析是一种无创且便捷的诊断方法,有助于提高患者的治愈率。在本研究中,基于聚苯胺/聚偏二氟乙烯(PANI/PVDF)压电气体传感阵列开发了一种自供电呼气分析仪,用于潜在检测多种内科疾病。该设备通过将呼出的呼吸能量转换为压电气体传感信号,无需任何外部电源。设备中的五个传感单元对浓度范围为0至600 ppm的各种气体标志物具有不同的灵敏度。其工作原理可归因于PVDF的管内气流诱导压电效应与PANI电极的气敏特性的耦合。此外,该设备还展示了其作为乙醇分析仪的用途,大致模拟脂肪肝诊断。这种新方法可应用于制造新型呼气分析仪,并推动自供电系统的发展。