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H_2 gas sensing properties of a ZnO/CuO and ZnO/CuO/Cu_2O Heterostructures

机译:ZnO / CuO和ZnO / CuO / Cu_2O异质结构的H_2气敏特性

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摘要

The most important parameters of gas sensors are sensitivity and especially high selectivity to specific chemical species. To improve these parameters we developed sensor structures based on layered semiconducting oxides, namely CuO/Cu_2O, CuO:Zn/Cu_2O:Zn, NiO/ZnO. In this work, the ZnO/Cu_xO (where x = 1, 2) bi-layer heterostructure were grown via a simple synthesis from chemical solution (SCS) at relatively low temperatures (< 95 °C), representing a combination of layered n-type and p-type semiconducting oxides which are widely used as sensing material for gas sensors. The main advantages of the developed device structures are given by simplicity of the synthesis and technological cost-efficiency. Structural investigations showed high crystallinity of synthesized layers corifirming the presence of zinc oxide nanostructures on the surface of the copper oxide film deposited on glass substrate. Structural changes in morphology of grown nanostructures induced by post-grown thermal annealing were observed by scanning electron microscopy (SEM) investigations, and were studied in detail. The influence of thermal annealing type on the optical properties was also investigated. As an example of practical applications, the ZnO/Cu_xO bi-layer heterojunctions and ZnO/CuO/Cu_2O three-layered structures were integrated into sensor structures and were tested to different types of reducing gases at different operating temperatures (OPT), showing promising results for fabrication of selective gas sensors.
机译:气体传感器最重要的参数是灵敏度,尤其是对特定化学物质的高选择性。为了改善这些参数,我们开发了基于层状半导体氧化物的传感器结构,即CuO / Cu_2O,CuO:Zn / Cu_2O:Zn,NiO / ZnO。在这项工作中,ZnO / Cu_xO(其中x = 1,2)双层异质结构是通过在较低温度(<95°C)下由化学溶液(SCS)进行简单合成而生长的,代表了层状n-型和p型半导体氧化物,广泛用作气体传感器的传感材料。所开发的器件结构的主要优点在于合成的简单性和技术成本效率。结构研究表明,合成层的高结晶度证实了沉积在玻璃基板上的氧化铜膜表面上存在氧化锌纳米结构。通过扫描电子显微镜(SEM)研究观察到由生长后的热退火引起的生长的纳米结构的形态结构变化,并对其进行了详细的研究。还研究了热退火类型对光学性能的影响。作为实际应用的一个例子,将ZnO / Cu_xO双层异质结和ZnO / CuO / Cu_2O三层结构集成到传感器结构中,并在不同的工作温度(OPT)下对不同类型的还原气体进行了测试,显示出令人鼓舞的结果用于制造选择性气体传感器。

著录项

  • 来源
    《Oxide-based materials and devices VIII》|2017年|101052A.1-101052A.6|共6页
  • 会议地点 San Francisco(US)
  • 作者单位

    Department of Microelectronics and Biomedical Engineering, Technical University of Moldova, 168 Stefan Cel Mare Blvd., MD-2004, Chisinau, Republic of Moldova;

    Department of Microelectronics and Biomedical Engineering, Technical University of Moldova, 168 Stefan Cel Mare Blvd., MD-2004, Chisinau, Republic of Moldova;

    Functional Nanomaterials, Institute for Materials Science, Kiel University of, 24143 Kiel, Germany;

    Functional Nanomaterials, Institute for Materials Science, Kiel University of, 24143 Kiel, Germany;

    Department of Microelectronics and Biomedical Engineering, Technical University of Moldova, 168 Stefan Cel Mare Blvd., MD-2004, Chisinau, Republic of Moldova,Functional Nanomaterials, Institute for Materials Science, Kiel University of, 24143 Kiel, Germany,PSL Research University, Chimie ParisTech-CNRS, Institut de Recherche de Chimie Paris, UMR8247, 11 rue P. et M. Curie, 75005 Paris, France;

    Department of Microelectronics and Biomedical Engineering, Technical University of Moldova, 168 Stefan Cel Mare Blvd., MD-2004, Chisinau, Republic of Moldova;

    PSL Research University, Chimie ParisTech-CNRS, Institut de Recherche de Chimie Paris, UMR8247, 11 rue P. et M. Curie, 75005 Paris, France;

    PSL Research University, Chimie ParisTech-CNRS, Institut de Recherche de Chimie Paris, UMR8247, 11 rue P. et M. Curie, 75005 Paris, France;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heterostructure; ZnO/CuO; hydrogen sensor; nanostructured films;

    机译:异质结构ZnO / CuO;氢传感器纳米结构膜;

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