Effect of fluorine tin oxide substrate on the deposited SnO2: Ni thin films properties for gas sensing
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Elsevier BV
Reference40 articles.
1. A Review on Electrical and Gas-Sensing Properties of Reduced Graphene Oxide-Metal Oxide Nanocomposites;K. H. V,2022
2. Diversiform metal oxide-based hybrid nanostructures for gas sensing with versatile prospects;Zhang;Coord. Chem. Rev.,2020
3. Gas sensing properties comparison between SnO2 and highly antimony-doped SnO2 materials;Feng;ECS Meeting Abstracts,2021
4. A review on tin dioxide gas sensor: the role of the metal oxide doping, nanoparticles, and operating temperatures;Rzaij;World Journal of Advanced Research and Reviews,2022
5. Resistive-type VOCs and pollution gases sensor based on SnO2: a review;Kang;Mater. Sci. Semicond. Process.,2022
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