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  4. Layer by layer deposition of colloidal SnO2 nano particles
 
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2017
Journal Article
Title

Layer by layer deposition of colloidal SnO2 nano particles

Abstract
The gas sensing properties of functional metal oxide layers depend on multitude parameters, including vacancy concentration, layer morphology and thickness, size and shape of the nano/microstructure, and porosity. Using colloidal tin oxide inks we demonstrate a layer by layer deposition technique to control the thickness and composition of gas sensitive layers. To do this we combine inkjet-printing with colloidal suspensions of SnO2 particles to provide a scalable method to interface microelectromechanical systems (MEMS) with nano particles. The approach may pave the way towards an industry ready integration technique to incorporate gas sensitive quantum dots or hybrid nanomaterials in arbitrary sensing devices.
Author(s)
Gao, Haitao
Univ. Freiburg
Lyu, Xuemeng  orcid-logo
Univ. Freiburg/Brsg.  
Wöllenstein, Jürgen  
Univ. Freiburg/Brsg.  
Palzer, Stefan
Univ. Freiburg
Journal
Proceedings. MDPI AG  
Conference
Eurosensors Conference 2017  
Open Access
Link
Link
DOI
10.3390/proceedings1040318
Additional full text version
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Language
English
Fraunhofer-Institut für Physikalische Messtechnik IPM  
Keyword(s)
  • tin oxide

  • colloidal dispersion

  • inkjet printing

  • nano-micro integration

  • MEMS

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