CuCrO2/Cr2O3 heterojunction gas sensor for low-temperature and high response H2S detection and its application for
Baoyu Song1, Jinghan Wang2, Xiaona Zhang3
1Department of Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin, 150030, China. songbaoyu1026@163.com.
Abstract:
Hydrogen sulfide (H2S) is a highly toxic and flammable gas that is also an important indicator of meat spoilage. Therefore, real-time and accurate detection of H2S concentration is essential to ensure environmental safety and human health. Despite its significance, achieving highly sensitive detection of H2S gases at low temperatures remains a formidable challenge. In this study, we used the biomass template method to controllably prepare CuCrO2-doped Cr2O3 p-p heterojunction hollow tubes. Among them, the 10.93 wt% Cu-doped Cr2O3 sensing material (Cu-Cr2O3-3) obtained by calcination at 500 °C has a good overall gas-sensing performance to H2S gas. It has a response value of up to 441.2 for 100 ppm H2S gas at 92 °C, as well as good selectivity, low calculated detection limit of 11.15 ppb and humidity resistance. Meanwhile, the reasons for the performance differences between the 5 composites were explored in detail by using various characterisation methods. The gas sensing mechanism of the Cu-Cr2O3-3 sensor was also analysed by combining MS, XPS and 'quasi-in-situ' Raman spectrum. In addition, we carried out experiments on the freshness detection of pork and shrimp by the Cu-Cr2O3-3 sensor, confirming its potential application in meat freshness evaluation.
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