Revolutionary SnO₂@NiO Nanocomposites for VOC Detection! #sciencefather #researchaward




We present a facile strategy to engineer SnO₂@NiO core–shell nanocomposites derived from metal–organic frameworks (MOFs) for advanced VOC gas sensing. The MOF-templated synthesis ensures a uniform, porous architecture that enhances gas adsorption and electron transport. This structural synergy boosts sensitivity, selectivity, and response speed toward volatile organic compounds. The SnO₂ core provides excellent conductivity while the NiO shell offers superior catalytic properties, making the sensor highly effective at room temperature. With outstanding repeatability and stability, this nanocomposite paves the way for smart environmental monitoring and industrial safety applications. This is a step forward in high-performance, real-time VOC sensing technology.

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#Nanotechnology #MOF #GasSensor #SnO2 #NiO #VOCsDetection #SmartSensors #EnvironmentalMonitoring #Nanocomposites #AirQuality #ChemicalSensing #SensorInnovation #RoomTempSensors #CoreShell #NextGenSensors #SnO2NiO #MOFSensor #AdvancedMaterials #TechInnovation #GreenTech

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