Original Research
Performance of copper doped zinc oxide nanoparticles synthesized through solid state reaction route for humidity sensing device
V. Rajpoot
a
B. Das
a
V. Rajput
b
A. S. Verma
c

aAdvanced Materials Research Lab, Department of Physics, University of

Lucknow, Lucknow, (226007) India

bDepartment of Physics, Government Girls Inter College Huzoorpur, Bahraich, (271872) India

cDivision of Research and Innovation, School of Applied and Life Sciences,

Uttaranchal University, Dehradun, (248007) India

d University Centre for Research & Development, Department of Physics,

Chandigarh University, Mohali, Punjab (140413) India


Journal of Ovonic Research 2024, 20(1),57-64; https://doi.org/10.15251/JOR.2024.201.57
Submitted:Sept 03, 2023
Accepted:Jan 10, 2024
Published:Jan 01, 2024
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Cite This Article
V. Rajpoot ,B. Das ,V. Rajput ,A. S. Verma . (2024). Journal of Ovonic Research. Performance of copper doped zinc oxide nanoparticles synthesized through solid state reaction route for humidity sensing device, 20(1), ,57-64. https://doi.org/10.15251/JOR.2024.201.57
Abstract

In the current study, the moisture-sensing properties of three Copper (1%) doped Zinc Oxide nanomaterials, CZ-1, CZ-2, and CZ-3, are examined. These substances were created by solid-state interactions involving Cu2O and ZnO, CuO and ZnO, and, separately, Cu and ZnO. After four hours of annealing at 700°C for each of the three pellet samples, humidity-sensing tests were conducted. Throughout the whole range of relative humidity percent (15-90%RH) at room temperature, it was observed that the electrical resistance of all three nanomaterials reduced steadily. Powder x-ray diffractometer and scanning electron microscopy analyses were performed on the nanomaterial pellets to determine their crystallinity, structural phases (gross crystal structure), and surface morphology. Both the Scherer's approach and the Williamson and Hall's method were used to determine the crystallite size of the three samples, CZ-1, CZ-2, and CZ-3. The CZ-3 sample annealed at 700°C had the lowest crystallite size (36 nm) and the highest humidity sensitivity of the three samples.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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