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基于具有氧化石墨烯量子点修饰气相色谱柱和金属氧化物气体探测器的微集成色谱系统的异戊二烯标记气体实时检测

Real-time detection of isoprene marker gas based on micro-integrated chromatography system with GOQDs-modifiedGC column and metal oxide gas detector.

作者信息

Han Baoqing, Zhang Xinyu, Wang Yan, Wang Wenjuan, Wang Benben, Li Shuai, Wang Hairong, Yan Yuefei, Han Jiusheng, Wang Chuanliu, Wang Congsi

机构信息

School of Mechano- Electronic Engineering, Xidian University, Xi'an 710071, People's Republic of China.

State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, People's Republic of China.

出版信息

Nanotechnology. 2023 Aug 21;34(45). doi: 10.1088/1361-6528/aced10.

Abstract

Isoprene is a typical physiological marker that can be used to screen for chronic liver disease. This work developed a portable micro-integrated chromatography analysis system based on micro-electromechanical system technology, nanomaterials technology and embedded microcontroller technology. The system integrated components such as graphene oxide quantum dots modified semi-packed microcolumn, InOnanoflower (NF) gas-sensitive detector and 3D printed miniature solenoid valve group. The effectiveness of the separation effect of the micro-integrated system was verified by gas mixture test; the laws of the influence of carrier gas pressure and column temperature on the chromatographic separation performance, respectively, were investigated, and the working conditions (column temperature 90 °C and carrier gas pressure 7.5 kPa) for system testing were determined. The percentages of relative standard deviation of the peak areas and retention times obtained for the separated gases were in the range of 0.95%-6.06%, indicating the good reproducibility of the system. Meanwhile, the microintegrated system could detect isoprene down to 50 ppb at small injection volume (1 ml). The system response increased with increasing isoprene concentration and was linearly correlated with isoprene concentration (= 0.986), indicating that the system was expected to be used for trace detection of isoprene, a marker gas for liver disease, in the future.

摘要

异戊二烯是一种可用于筛查慢性肝病的典型生理标志物。本研究基于微机电系统技术、纳米材料技术和嵌入式微控制器技术开发了一种便携式微集成色谱分析系统。该系统集成了氧化石墨烯量子点修饰的半填充微柱、铟纳米花(NF)气敏探测器和3D打印微型电磁阀组等组件。通过混合气体测试验证了微集成系统分离效果的有效性;分别研究了载气压力和柱温对色谱分离性能的影响规律,并确定了系统测试的工作条件(柱温90℃,载气压力7.5kPa)。分离气体的峰面积和保留时间的相对标准偏差百分比在0.95%-6.06%范围内,表明该系统具有良好的重现性。同时,该微集成系统在小进样量(1ml)下能够检测低至50ppb的异戊二烯。系统响应随异戊二烯浓度的增加而增加,且与异戊二烯浓度呈线性相关(=0.986),表明该系统有望在未来用于肝病标志物气体异戊二烯的痕量检测。

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