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基于 MXene/VO/CuWO 的高选择性超灵敏室温氨传感器。

Highly selective MXene/VO/CuWO-based ultra-sensitive room temperature ammonia sensor.

机构信息

Department of Physics, Yasouj University, Yasouj 75918-74831, Iran.

Department of Semiconductors, Materials and Energy Research Center (MERC), P.O. Box 31787-316, Tehran, Iran.

出版信息

J Hazard Mater. 2021 Aug 15;416:126196. doi: 10.1016/j.jhazmat.2021.126196. Epub 2021 May 24.

Abstract

A Schottky junction based on TiCT MXene sheet integrated with marigold flower-like VO/CuWO heterojunction was designed and fabricated for robust ammonia sensing by monitoring the electrical resistance changes in air and ammonia. The electron transport behavior of the sensor was investigated by electrochemical analysis, ultraviolet photoelectron spectroscopy and reflection electron energy loss spectroscopy. Besides, negative zeta potential obtained for sensor components was in consistent with surface functional groups (e.g. OH and F) observed by XPS analysis helping better understanding of the ammonia sensing mechanism. The results desirably confirmed high sensitivity, selectivity, linear range (1-160 ppm), the limit of quantification, repeatability, long-term stability, very short response time (few seconds) and low working temperature (25 °C) of the sensor. The measurements on the resistance changes of the MXene/VO/CuWO-based sensor under the exposure to various types of analytes (Ammonia, Acetone, Benzene, Chloroform, DMF, Ethanol, humidity (80%), Methanol and Toluene as well as NO, NO, HS, SO, CO and CH) at different concentrations revealed that the fabricated sensor is excellently selective to ammonia with ultra-high sensitivity. Intra-day stability (7 runs a day) and long-term stability (every 10 days over 70 days) as important sensor characteristics were investigated at 51 ppm and ambient temperature, which showed very good repeatability and recoverability in both short and long periods for sensing the ammonia. Overall, MXene/VO/CuWO was shown to be cost-effective, easy to handle and suitably applicable for simple, ultrafast and extremely efficient trace ammonia detection, which could be of high interest for future exhaled breath analysis and the development of a novel noninvasive diagnostic strategy to monitor chronic kidney disease to stop a large measure of unnecessary invasive testing.

摘要

基于 TiCT MXene 片与万寿菊花状 VO/CuWO 异质结的肖特基结被设计和制造用于通过监测空气中和氨中的电阻变化来进行稳健的氨传感。通过电化学分析、紫外光电子能谱和反射电子能量损失谱研究了传感器的电子输运行为。此外,传感器组件的负 ζ 电位与 XPS 分析观察到的表面官能团(例如 OH 和 F)一致,有助于更好地理解氨传感机制。结果令人满意地证实了传感器的高灵敏度、选择性、线性范围(1-160 ppm)、定量限、重复性、长期稳定性、非常短的响应时间(几秒钟)和低工作温度(25°C)。在不同浓度下,对暴露于各种类型的分析物(氨、丙酮、苯、氯仿、DMF、乙醇、湿度(80%)、甲醇和甲苯以及 NO、NO、HS、SO、CO 和 CH)时 MXene/VO/CuWO 基传感器电阻变化的测量表明,所制造的传感器对氨具有极好的选择性和超高的灵敏度。在 51 ppm 和环境温度下研究了作为重要传感器特性的日内稳定性(每天 7 次运行)和长期稳定性(70 天内每 10 天一次),这表明在短时间和长时间内对氨的感应具有非常好的重复性和可恢复性。总的来说,MXene/VO/CuWO 具有成本效益、易于处理,非常适合用于简单、超快和极其高效的痕量氨检测,这对于未来的呼气分析和开发新型非侵入性诊断策略以监测慢性肾病以停止大量不必要的侵入性测试具有重要意义。

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