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Ammonia sensors on the base of gadolinium doped tin oxide thin films and its characterization: Effect of doping concentration by Maheswari, S.; Karunakaran, M.; Chandrasekar, L. Bruno; Kasirajan, K. is a Physics and Astronomy article available to read on EtoBox.
What is Ammonia sensors on the base of gadolinium doped tin oxide thin films and its characterization: Effect of doping concentration about?
Nano-crystalline gadolinium doped tin oxide thin films were prepared by the spray pyrolysis method. The effect of doping concentration on its micro-structural, optical and gas sensing properties was reported. The grain size of the prepared films ranges from ~13 to 28 nm. The effective doping of gadolinium was confirmed by EDX and elemental mapping. The optical transmission and band gap were reduced as the concentration of doping increases. The electron concentration, Hall coefficient, and refractive index were examined. High gas sensing of ammonia was observed and the effect of doping concentration was reported.
Who reads Ammonia sensors on the base of gadolinium doped tin oxide thin films and its characterization: Effect of doping concentration?
It is typically read by researchers, students, and practitioners in Physics and Astronomy.
- Author
- Maheswari, S.; Karunakaran, M.; Chandrasekar, L. Bruno; Kasirajan, K.
- Publisher
- Elsevier Science; Elsevier ; Elsevier BV (ISSN 0921-4526)
- Published
- 2021
- Language
- EN
- Field
- Physics and Astronomy (Physical Sciences)
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