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氧化锌气体传感器层的微观结构与化学成分之间的相关性及其在氯气氛中的气敏特性

Correlation between Microstructure and Chemical Composition of Zinc Oxide Gas Sensor Layers and Their Gas-Sensitive Properties in Chlorine Atmosphere.

作者信息

Fiedot-Toboła Marta, Suchorska-Woźniak Patrycja, Startek Kamila, Rac-Rumijowska Olga, Szukiewicz Rafał, Kwoka Monika, Teterycz Helena

机构信息

Faculty of Microsystem Electronics and Photonics, Wrocław University of Science and Technology, Janiszewskiego 11/17, 50-372 Wrocław, Poland.

Łukasiewicz Research Network-PORT Polish Center for Technology Development, Stabłowicka 147, 54-066 Wrocław, Poland.

出版信息

Sensors (Basel). 2020 Dec 5;20(23):6951. doi: 10.3390/s20236951.

Abstract

In this article, we present results concerning the impact of structural and chemical properties of zinc oxide in various morphological forms and its gas-sensitive properties, tested in an atmosphere containing a very aggressive gas such as chlorine. The aim of this research was to understand the mechanism of chlorine detection using a resistive gas sensor with an active layer made of zinc oxide with a different structure and morphology. Two types of ZnO sensor layers obtained by two different technological methods were used in sensor construction. Their morphology, crystal structure, specific surface area, porosity, surface chemistry and structural defects were characterized, and then compared with gas-sensitive properties in a chlorine-containing atmosphere. To achieve this goal, scanning electron microscopy (SEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and photoluminescence spectroscopy (PL) methods were used. The sensing properties of obtained active layers were tested by the temperature stimulated conductance method (TSC). We have noticed that their response in a chlorine atmosphere is not determined by the size of the specific surface or porosity. The obtained results showed that the structural defects of ZnO crystals play the most important role in chlorine detection. We demonstrated that Cl adsorption is a concurrent process to oxygen adsorption. Both of them occur on the same active species (oxygen vacancies). Their concentration is higher on the side planes of the zinc oxide crystal than the others. Additionally, ZnO sublimation process plays an important role in the chlorine detection mechanism.

摘要

在本文中,我们展示了关于各种形态的氧化锌的结构和化学性质及其气敏特性的影响的研究结果,这些特性是在含有如氯气这种极具腐蚀性气体的气氛中测试的。本研究的目的是了解使用具有由不同结构和形态的氧化锌制成的活性层的电阻式气体传感器检测氯气的机制。在传感器构建中使用了通过两种不同技术方法获得的两种类型的氧化锌传感器层。对它们的形态、晶体结构、比表面积、孔隙率、表面化学和结构缺陷进行了表征,然后与在含氯气氛中的气敏特性进行了比较。为实现这一目标,使用了扫描电子显微镜(SEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)和光致发光光谱(PL)方法。通过温度激发电导法(TSC)测试了所获得的活性层的传感特性。我们注意到它们在氯气氛中的响应并非由比表面积或孔隙率的大小决定。所得结果表明,氧化锌晶体的结构缺陷在氯气检测中起最重要的作用。我们证明了氯吸附是与氧吸附同时发生的过程。它们都发生在相同的活性物种(氧空位)上。它们在氧化锌晶体的侧面上的浓度比其他面更高。此外,氧化锌升华过程在氯气检测机制中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e499/7730158/1c91bb799d96/sensors-20-06951-g001.jpg

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