Yueyu Lin, Paola Formica, R. Krebbers, A. Khodabakhsh, S. M. Cristescu
2026.5.4APPLIED SPECTROSCOPY
Abstract
Reliable monitoring and analysis of volatile organic compounds (VOCs) are crucial for environmental monitoring and human health. In this work, we report a system for fast, sensitive, and multispecies detection of VOCs by combining a fiber-based broadband mid-infrared (MIR) supercontinuum (SC) source with an upconversion spectrometer. The system's performance in terms of species identification accuracy, robustness against inter-species interference and real-time multi-species detection capability was evaluated by monitoring and tracing the evaporation dynamics of three VOCs, i.e., acetone, ethanol, and α-pinene. We achieved detection limits of 30 parts per million per meter (ppm·m), 5 ppm·m, and 0.6 ppm·ּּm in 1 second for these three compounds, respectively. Furthermore, the evaporation behavior of individual compounds from a mixture was investigated to demonstrate the system's capability for dynamic multicomponent analysis.
Citation format
LIN, Yueyu, et al. Sub-second, sensitive and multispecies detection of volatile organic compounds using a mid-infrared broadband supercontinuum source and upconversion spectrometer. APPLIED SPECTROSCOPY, 2026, 80(7): 37028261446656.