| Literature DB >> 29299924 |
Chenwen Lin1, Xiaojun Xian1, Xingcai Qin1, Di Wang1, Francis Tsow1, Erica Forzani1, Nongjian Tao1.
Abstract
Carbon monoxide (CO) is a highly poisonous gas, which can cause serious health risk. CO monitoring helps protect us from excessive exposure at home and in the workplace, and reduce occupation-related health risks for workers. Conventional electrochemical and metal oxide semiconductors (MOS) based CO sensors have been widely used, but the drawbacks such as poor selectivity and calibration burden also limit their applications, e.g., as wearable exposure monitors. Aiming at the reliable, miniaturized, and easy-to-use personal exposure device development, we report a colorimetric CO sensing platform, which achieves a detection limit of 1 ppm, dynamic range of 0-500 ppm, and high selectivity to CO over common interferents in air, such as CO2, NO2, SO2, and O3. This optical sensing platform can be expanded to other air pollutants by adding other chemical sensing probes. We believe the new sensing platform we introduced can provide a potential high performance sensing unit for wearable personal exposure assessment devices.Entities:
Keywords: carbon monoxide; colorimetry; gas sensor; personal exposure monitor; wearable device
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Year: 2018 PMID: 29299924 DOI: 10.1021/acssensors.7b00722
Source DB: PubMed Journal: ACS Sens ISSN: 2379-3694 Impact factor: 7.711