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开发一种用于同时检测氨气和二氧化碳气体的化学电阻式气体传感器阵列。

Developing a Chemiresistive Gas Sensor Array for Simultaneous Detection of Ammonia and Carbon Dioxide Gases.

作者信息

Rath Ronil J, Zhang Wesley B, Kavehei Omid, Dehghani Fariba, Naficy Sina, Farajikhah Syamak, Oveissi Farshad

机构信息

School of Chemical and Biomolecular Engineering, The University of Sydney, Sydney, NSW 2006, Australia.

School of Biomedical Engineering, The University of Sydney, Sydney, NSW 2006, Australia.

出版信息

ACS Sens. 2024 Jun 28;9(6):2836-2845. doi: 10.1021/acssensors.3c02372. Epub 2024 May 16.

Abstract

Chemiresistive polymer-based sensors are promising platforms for monitoring various gases and volatile organic compounds. While they offer appealing attributes, such as ease of fabrication, flexibility, and cost-effectiveness, most of these sensors have a nearly identical response to cross-reactive gases, such as ammonia (NH) and carbon dioxide (CO). Aiming to address the shortcomings of chemiresistive polymer-based sensors in selectivity and simultaneous measurements of cross-reactive gases, a chemiresistive sensor array was developed consisting of components sensitive to carbon dioxide and ammonia as well as a control segment to provide the baseline. The designed system demonstrated a wide detection range for both ammonia (ranging from 0.05 to 1000 ppm) and carbon dioxide (ranging from 10 to 10 ppm) at both room and low temperatures (e.g., 4 °C). Our results also demonstrate the ability of this sensor array for the simultaneous detection of carbon dioxide and ammonia selectively in the presence of other gases and volatile organic compounds. Finally, the array was used to monitor CO/NH in real food samples to demonstrate the potential for real-world applications.

摘要

基于化学电阻聚合物的传感器是监测各种气体和挥发性有机化合物的有前途的平台。虽然它们具有诸如易于制造、灵活性和成本效益等吸引人的特性,但大多数这些传感器对交叉反应气体(如氨(NH)和二氧化碳(CO))的响应几乎相同。为了解决基于化学电阻聚合物的传感器在选择性和交叉反应气体同时测量方面的缺点,开发了一种化学电阻传感器阵列,该阵列由对二氧化碳和氨敏感的组件以及一个提供基线的控制部分组成。所设计的系统在室温和低温(例如4°C)下对氨(范围为0.05至1000 ppm)和二氧化碳(范围为10至10 ppm)都显示出广泛的检测范围。我们的结果还证明了该传感器阵列在存在其他气体和挥发性有机化合物的情况下选择性地同时检测二氧化碳和氨的能力。最后,该阵列用于监测真实食品样品中的CO/NH,以证明其在实际应用中的潜力。

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