Preparation of Al3+-doped ZnO micro–nanospheres for highly sensitive CO gas sensors
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Materials Science,General Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00339-021-04327-w.pdf
Reference31 articles.
1. H. Gong, J.Q. Hua, J.H. Wang, C.H. Ong, F.R. Zhu, Nano-crystalline Cu-doped ZnO thin film gas sensor for CO. Sens. Actuators B 115, 247–251 (2006)
2. G. Neri, A. Bonavita, G. Micali, G. Rizzo, E. Callone, G. Carturan, Resistive CO gas sensors based on In2O3 and InSnOX nanopowders synthesized via starch-aided sol–gel process for automotive applications. Sens. Actuators B 132, 224–233 (2008)
3. T. Seiyama, S. Kagawa, Study on a detector for gaseous components using semi-conductive thin films. Anal. Chem. 38, 1069–1073 (1966)
4. G. Neri, Non-conventional sol–gel routes to nanosized metal oxides for gas sensing: from materials to applications. Sci. Adv. Mater. 2, 3–15 (2010)
5. D.H. Yoon, G.M. Choi, Microstructure and CO gas sensing properties of porous ZnO produced by starch addition. Sens. Actuators B 45, 251–257 (1997)
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