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ARTICLE 2025 Vol 4 · No 5 EN a7d9bd60c0d4

DESIGN AND OPERATING PRINCIPLE OF A SEMICONDUCTOR SENSOR FOR METHANE AND NATURAL GAS

Research Focus International Scientific Journal, 4(5), 51–55 · ISSN 2181-3833

Abstract

This paper presents the design and operational principles of a semiconductor-based gas sensor specifically engineered for the detection of methane (CH₄) and natural gas. The sensor operates on the principle of conductivity modulation in metal oxide semiconductors such as tin oxide (SnO₂), zinc oxide (ZnO), and tungsten oxide (WO₃), whose electrical resistance changes in response to gas adsorption on the sensor surface. The sensing element is integrated into a planar structure with a built-in microheater, allowing temperature control to optimize sensitivity and selectivity. Methane molecules are detected through redox reactions with chemisorbed oxygen species, resulting in measurable changes in resistance. The design includes signal conditioning circuits and data acquisition modules to enable real-time monitoring. The sensor demonstrates high sensitivity to low concentrations of methane, fast response and recovery times, and stable operation under varying environmental conditions.

Keywords

Nanocomposite metal oxidesGas sensorsMethane detectionNatural gas sensingSemiconductor sensorsSnO₂ZnOWO₃ Sol-gel synthesisHydrothermal method.

How to cite

Murodjonovna, Khudoyberdiyeva Sabina; Ergashboyevna, Eshobilova Mavjuda (2025). DESIGN AND OPERATING PRINCIPLE OF A SEMICONDUCTOR SENSOR FOR METHANE AND NATURAL GAS. Research Focus International Scientific Journal, 4(5), 51–55. https://doi.org/10.66073/researchfocus.v4i5.1613

Identifier
https://rf-library.uz/article/a7d9bd60c0d4/design-and-operating-principle-of-a-semiconductor-sensor-for-methane-and
DOI
10.66073/researchfocus.v4i5.1613
Licence
Copyright (c) 2025 Research Focus International Scientific Journal
Publisher
LLC Ilm-fan va innovatsiyalar akademiyasi
Added to repository
2026-08-07