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用于增强胺类传感的联苯-rGO复合室温气体传感器。

Biphenyl-rGO composite room temperature gas sensor for enhanced amine sensing.

作者信息

Nadekar Baliram, Khollam Yogesh B, Shaikh Shoyebmohamad F, Shah Gaurav, Kakade Yogesh, Banewar Vishal, Nakate Umesh T, Al Enizi Abdullah M, More Pravin S

机构信息

Nanomaterials Application Laboratory, Department of Physics, The Institute of Science, Fort, Mumbai, 400032, Maharashtra, India.

Department of Physics, Baburaoji Gholap College, Sangvi, Pune, 411027. Maharashtra, India.

出版信息

Chemosphere. 2024 Mar;351:141244. doi: 10.1016/j.chemosphere.2024.141244. Epub 2024 Jan 17.

DOI:10.1016/j.chemosphere.2024.141244
PMID:38242515
Abstract

Amines, which are classified as volatile organic compounds (VOCs), serve a variety of purposes in the fields of environmental monitoring, food safety, and healthcare diagnosis. The present technique for detecting amine levels involves sophisticated setups and bulky equipment. Here. In this study, a chemoresistive gas sensor is developed that is cost-effective and easy to operate at room temperature (RT). The sensor is designed specifically for the detection of Ammonia, dimethylamine (DMA), trimethylamine (TMA), and total volatile basic nitrogen (TVB-N). Using biphenyl-reduced graphene oxide (B-rGO) composite gas sensors effectively addresses the issues of low sensitivity-selectivity and long-term instability commonly observed in conventional amine sensors. B-rGO sensor produced sensitivity of ∼3500 and selectivity above 30 for TVB-N sensing. The sensor is stable for temperature fluctuations below 50 °C and shows stable sensing response for period of over 3 months. A Chemoresistive B-rGO sensor was developed using an ultrasonic spray deposition system with optimized flow rate of 50 mL/h. Rapid evaporation of solvent using hot plate has resulted in unique morphology for B-rGO film sensors. The highest sensitivity, ∼836, is obtained for 100 ppm of ammonia with ammonia > DMA > TMA as a sensitivity order. B-rGO showed almost seven times higher amine sensitivity than rGO which highlights the importance of biphenyl in the B-rGO composite. Sensor calibration curve has been presented in the study to understand change in the sensitivity of sensor with increasing analyte gas concentration. The calibration curve has an average R-squared value of 0.98.

摘要

胺类被归类为挥发性有机化合物(VOCs),在环境监测、食品安全和医疗诊断领域有多种用途。目前检测胺水平的技术涉及复杂的装置和庞大的设备。在此,本研究开发了一种具有成本效益且易于在室温(RT)下操作的化学电阻式气体传感器。该传感器专为检测氨、二甲胺(DMA)、三甲胺(TMA)和总挥发性碱性氮(TVB-N)而设计。使用联苯还原氧化石墨烯(B-rGO)复合气体传感器有效地解决了传统胺传感器中常见的低灵敏度-选择性和长期不稳定性问题。B-rGO传感器对TVB-N传感的灵敏度约为3500,选择性高于30。该传感器在低于50°C的温度波动下稳定,并且在超过3个月的时间内显示出稳定的传感响应。使用超声喷雾沉积系统开发了一种化学电阻式B-rGO传感器,优化流速为50 mL/h。使用热板快速蒸发溶剂导致B-rGO薄膜传感器具有独特的形态。对于100 ppm的氨,灵敏度顺序为氨>DMA>TMA,获得的最高灵敏度约为836。B-rGO的胺灵敏度几乎比rGO高七倍,这突出了联苯在B-rGO复合材料中的重要性。该研究中给出了传感器校准曲线,以了解传感器灵敏度随分析物气体浓度增加的变化。校准曲线的平均R平方值为0.98。

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