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氧化铜和氧化锡的异质结构用于 NO 检测。

The Heterostructures of CuO and SnO for NO Detection.

机构信息

Faculty of Computer Science, Electronics and Telecommunications, AGH University of Science and Technology, al. A. Mickiewicza 30, 30-059 Krakow, Poland.

Faculty of Materials Science and Ceramics, AGH University of Science and Technology, al. A. Mickiewicza 30, 30-059 Kraków, Poland.

出版信息

Sensors (Basel). 2021 Jun 26;21(13):4387. doi: 10.3390/s21134387.

Abstract

Controlling environmental pollution is a burning problem for all countries more than ever. Currently, due to the increasing industrialization, the number of days when the limits of air pollutants are over the threshold levels exceeds 80-85% of the year. Therefore, cheap and effective sensors are always welcome. One idea is to combine such solutions with cars and provide real-time information about the current pollution level. However, the environmental conditions are demanding, and thus the developed sensors need to be characterized by the high 3S parameters: sensitivity, stability and selectivity. In this paper, we present the results on the heterostructure of CuO/SnO and SnO/CuO as a possible approach for selective NO detection. The developed gas sensors exhibited lower operating temperature and high response in the wide range of NO and in a wide range of relative humidity changes. Material characterizations and impedance spectroscopy measurements were also conducted to analyze the chemical and electrical behavior.

摘要

控制环境污染比以往任何时候对所有国家来说都是一个迫切的问题。目前,由于工业化程度的提高,超过阈值的空气污染物天数超过了一年的 80-85%。因此,廉价且有效的传感器总是受欢迎的。一个想法是将这些解决方案与汽车结合起来,提供当前污染水平的实时信息。然而,环境条件要求苛刻,因此开发的传感器需要具有高的 3S 参数:灵敏度、稳定性和选择性。本文介绍了 CuO/SnO 和 SnO/CuO 异质结构作为选择性 NO 检测的一种可能方法的结果。所开发的气体传感器表现出较低的工作温度和在宽范围的 NO 和宽范围的相对湿度变化下的高响应。还进行了材料特性和阻抗谱测量,以分析化学和电气行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3da5/8272026/8822bc996d6e/sensors-21-04387-g001.jpg

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