4.8 Article

Ppb-Level Quartz-Enhanced Photoacoustic Detection of Carbon Monoxide Exploiting a Surface Grooved Tuning Fork

期刊

ANALYTICAL CHEMISTRY
卷 91, 期 9, 页码 5834-5840

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.analchem.9b00182

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资金

  1. National Key R&D Program of China [2017YFA0304203]
  2. National Natural Science Foundation of China (NSFC) [61622503, 61575113, 61805132, 11434007]
  3. Changjiang Scholars and Innovative Research Team in University of Ministry of Education of China [IRT_17R70]
  4. 111 project [D18001]
  5. Outstanding Innovative Teams of Higher Learning Institutions of Shanxi
  6. Foundation for Selected Young Scientists Studying Abroad, Sanjin Scholar [2017QNSJXZ-04]
  7. Robert Welch Foundation [C0586]
  8. THORLABS GmbH, within the joint-research laboratory PolySense
  9. Shanxi 1331KSC

向作者/读者索取更多资源

A compact and sensitive carbon monoxide (CO) sensor was demonstrated by using quartz enhanced photoacoustic spectroscopy (QEPAS) exploiting a novel 15.2 kHz quartz tuning fork (QTF) with grooved surfaces. The custom QTF was designed to provide a quality factor as high as 15 000 at atmospheric pressure, which offers a high detection sensitivity. A large QTF prong spacing of 800 mu m was selected, allowing one to avoid the use of any spatial filters when employing a quantum cascade laser as the excitation source. Four rectangular grooves were carved on two prong surfaces of the QTF to decrease the electrical resistance and hence enhance the signal amplitude. With water vapor as the catalyst for vibrational energy transfer, the sensor system using the novel surface grooved QTF achieved a CO minimum detection limit of 7 ppb for a 300 ms averaging time, which corresponds to a normalized noise equivalent absorption coefficient of 8.74 X 10(-9) cm(-1)W/root Hz. Continuous measurements covering a seven-day period for atmospheric CO were implemented to verify the reliability and validity of the developed CO sensor system.

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