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Preparation of defected SWCNTs decorated with en-APTAS for application in high-performance nitric oxide gas detection dagger

机译:准备叛逃SWCNTs装饰着en-APTAS高性能的应用程序一氧化氮气体探测匕首

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摘要

We demonstrate highly sensitive and selective chemiresistive-type NO gas detection using defected single-walled carbon nanotubes (SWCNTs) decorated with N-[3-(trimethoxysilyl)propyl]ethylene diamine (en-APTAS) molecules. The defected SWCNTs were prepared via furnace annealing at 700 degrees C and confirmed by transmission electron microscopy. A single en-APTAS molecule has two amine groups acting as adsorption sites for NO gas, which can improve the NO response. The NO response was further enhanced when the defected SWCNTs were utilized because NO sensing reactions could occur on both the inner and outer walls of the defected SWCNTs. The en-APTAS decoration improved the NO response of the SWCNT-based gas sensing devices by 2.5 times; when the defected SWCNTs were used, the NO response was further improved by 3 times. Meanwhile, the recovery performance in a time-resolved response curve was significantly improved (45 times) via a simple rinsing process with ethanol. Specifically, the fabricated device did not respond to carbon monoxide (CO) or BTEX gas (i.e., a mixture of benzene, toluene, ethyl benzene, and xylene), indicating its high selectivity to NO gas. The results show the possibility of a high-performance SWCNT-based NO gas sensor applicable to healthcare fields requiring ppb-level detection, such as in vitro diagnostics (IVDs) of respiratory diseases.
机译:我们展示高度敏感和选择性chemiresistive-type没有气体检测使用叛逃单壁碳纳米管(SWCNTs)装饰着N - (3 - (trimethoxysilyl)丙基)乙二胺(en-APTAS)分子。准备通过炉退火在700摄氏度并通过透射电子确认显微镜。组胺作为吸附网站没有气体,可以改善没有响应。反应是进一步加强叛逃SWCNTs被利用,因为没有感应反应可能发生在内部和外墙的SWCNTs叛逃。改进的没有响应SWCNT-based气体传感装置的2.5倍;进一步SWCNTs被使用,没有反应提高了3倍。表现在时间分辨响应曲线显著提高(45次)通过一个简单的用乙醇清洗过程。制造设备没有回应碳一氧化碳(CO)或BTEX气体(例如,一个混合的苯、甲苯、乙苯和二甲苯),表明其没有气体的高选择性。结果表明的可能性高性能SWCNT-based没有气体传感器适用于医疗领域的要求ppb-level检测,如体外诊断(试管)的呼吸道疾病。

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