Tesis doctorals> Departament d'Enginyeria Electrònica, Elèctrica i Automàtica

Gas sensor microsystems based on nanostructured layers via anodic oxidation

  • Dades identificatives

    Identificador: TDX:1130
    Autors:
    Calavia Boldú, Raúl
    Resum:
    This thesis shows the methodology to obtain nanostructured tungsten oxide layer as sensing material on silicon micromachined gas sensor devices. A porous anodised alumina layer was used as pattern to obtain it, so a technique has been developed to make compatible the anodising of aluminium and other metals like tungsten with the standard silicon processes. Two different nanostructuring approaches were developed, nanotube and nanodot based tungsten oxide layers. The WO3 nanotube layer has been obtained by the tungsten oxide deposition using reactive sputtering on the porous alumina layer. As a result a continuous sensing layer coats the pores without clogging them. WO3 nanodot layers were obtained by the anodising of an aluminium and tungsten bilayer, where the first anodising process grows the porous alumina layer and the second one generates the tungsten oxide nanodots in the end of the pores. Compositional and morphological studies and the study of their behaviour as gas sensors where conducted for the two nanomaterials. The results have been compared with the flat tungsten oxide layers on micromachined gas sensors.
  • Altres:

    Data: 2012-10-11
    Departament/Institut: Departament d'Enginyeria Electrònica, Elèctrica i Automàtica Universitat Rovira i Virgili.
    Idioma: eng
    Identificador: http://hdl.handle.net/10803/96314
    Font: TDX (Tesis Doctorals en Xarxa)
    Autor: Calavia Boldú, Raúl
    Director: Llobet Valero, Eduard Mozalev, Alexander
    Format: application/pdf 208 p.
    Editor: Universitat Rovira i Virgili
    Paraula Clau: Porous alumina Metal oxide gas sensors Microelectronics
    Títol: Gas sensor microsystems based on nanostructured layers via anodic oxidation
    Matèria: 62 - Enginyeria. Tecnologia 548 - Cristal·lografia 546 - Química inorgànica
  • Paraules clau:

    62 - Enginyeria. Tecnologia
    548 - Cristal·lografia
    546 - Química inorgànica
  • Documents:

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