4.6 Article

On-Chip Monolithic Integrated Multimode Carbon Nanotube Sensor for a Gas Chromatography Detector

期刊

ACS SENSORS
卷 -, 期 -, 页码 -

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acssensors.2c01359

关键词

multimode; CNT sensor; gas chromatography detector; monolithic integrated; acoustic waves

资金

  1. National Key R&D Program of China [2018YFE0118700]
  2. National Natural Science Foundation of China (NSFC) [62174119]
  3. 111 Project [B07014]
  4. Foundation for Talent Scientists of Nanchang Institute for Micro-technology of Tianjin University

向作者/读者索取更多资源

This paper presents a novel multimode CNT sensor, which improves fabrication repeatability by embedding a MEMS-based BAW resonator underneath the CNT layer and accelerates gas desorption rate by acoustic stimulation. Compared to traditional single mode detectors, the multimode CNT sensor exhibits improved sensitivity and dynamic range, making it suitable for gas identification in GC systems.
Carbon nanotube (CNT)-based chemiresistors are promising gas detectors for gas chromatography (GC) due to their intrinsic nanoscale porosity and excellent electrical conductivity. However, fabrication reproducibility, long desorption time, limited sensitivity, and low dynamic range limit their usage in real applications. This paper reports a novel on-chip monolithic integrated multimode CNT sensor, where a micro-electro-mechanical system-based bulk acoustic wave (BAW) resonator is embedded underneath a CNT chemiresistor. The device fabrication repeatability was improved by on-site monitoring of CNT deposition using BAW. We found that the acoustic stimulation can accelerate the gas desorption rate from the CNT surface, which solves the slow desorption issue. Due to the different sensing mechanisms, the multimode CNT sensor provides complementary responses to targets with improved sensitivity and dynamic range compared to a single mode detector. A prototype of a chromatographic system using the multimode CNT sensor was prepared by dedicated design of the connection between the device and the separation column. Such a GC system is used for the quantitative identification of a gas mixture at different GC conditions, which proves the feasibility of the multimode CNT detector for chromatographic analysis. The as-developed CMOS compatible multimode CNT sensor offers high sensing performance, miniaturized size, and low power consumption, which are critical for developing portable GC.

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