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Search results for: LIGHT-ENHANCED SENSING

Best results in : Research Potential Pokaż wszystkie wyniki (105)

Search results for: LIGHT-ENHANCED SENSING

  • Zespół Metrologii i Optoelektroniki

    * komputerowo wspomagana metrologia i diagnostyka * projektowanie systemów * mikrosystemów i makrosystemów elektronicznych * testowanie i diagnostyka elektroniczna * pomiary właściwości szumowych i zakłóceń * spektroskopia impedancyjna * telemetria i telediagnostyka internetowa * katedra redaguje Metrology and Measurement Systems * kwartalnik PAN znajdujący się na liście JCR

  • Zespół Fizyki Ciała Stałego

    Tematyka badawcza Katedry Fizyki Ciała Stałego obejmuje wytwarzanie i badanie materiałów dla energetyki (m.in. nanostruktury, sensory) o innowacyjnych właściwościach fizyko-chemicznych, tj: * kryształy, polikryształy, ceramika, szkło * materiały objętościowe, cienkie warstwy, nanomateriały * materiały metaliczne, półprzewodnikowe, nadprzewodnikowe, izolatory Tematyka badawcza obejmuje również badania symulacyjne i obliczeniowe...

  • Katedra Elektrochemii, Korozji i Inżynierii Materiałowej

    Badania realizowane przez pracowników Katedry obejmują w szczególności: zjawiska i procesy elektrochemiczne, podstawy korozji i zabezpieczenie przed korozją, inżynierię materiałowa, fizykochemię powierzchni. W Katedrze Elektrochemii, Korozji i Inżynierii Materiałowej realizowanych jest szereg kierunków związanych z badaniami podstawowymi jak i techniczno-technologicznymi. Głównymi obszarami działalności naukowej są: badania mechanizmu...

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Search results for: LIGHT-ENHANCED SENSING

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Search results for: LIGHT-ENHANCED SENSING

  • UV-Light-Induced Fluctuation Enhanced Sensing by WO3-Based Gas Sensors

    Publication
    • M. Trawka
    • J. Smulko
    • L. Hasse
    • C. Granqvist
    • R. Ionescu
    • E. Llobet
    • F. E. Annanouch
    • L. B. Kish

    - IEEE SENSORS JOURNAL - Year 2016

    WO3-based gas sensors were investigated under UV-light irradiation and at different working temperatures with the object of achieving superior sensitivity and selectivity. Resistance fluctuations in the WO3 layer were studied together with dc resistance measurements. The data were taken in synthetic air, ethanol, nitrogen dioxide, and mixtures of these gases. We conclude that UV irradiation can easily be applied to enhance the...

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  • Electrical and noise responses of Graphene-Silicon Schottky diodes decorated with Au nanoparticles for light-enhanced sensing of organic gases

    Open Research Data
    open access

    Graphene-Silicon Schottky junctions decorated with Au nanoparticles were used for light-enhanced detection of organic tetrahydrofuran and chloroform. Au nanoparticles exhibited localized surface plasmon resonance (LSPR) in the range of yellow light; thus yellow LED (wavelength of 592 nm) was utilized to induce the plasmonic effect, that increased the...

  • Effects of UV light irradiation on fluctuation enhanced gas sensing by carbon nanotube networks

    Publication

    - SENSORS AND ACTUATORS B-CHEMICAL - Year 2022

    The exceptionally large active surface-to-volume ratio of carbon nanotubes makes it an appealing candidate for gas sensing applications. Here, we studied the DC and low-frequency noise characteristics of a randomly oriented network of carbon nanotubes under NO2 gas atmosphere at two different wavelengths of the UV light-emitting diodes. The UV irradiation allowed to sense lower concentrations of NO2 (at least 1 ppm) compared to...

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  • Fluctuation-Enhanced Sensing

    Publication

    - Journal of Sensors - Year 2020

    Fluctuation-enhanced sensing (FES) is an exciting and relatively new research field that promises to extend the range of information that can be extracted from a single sensor. In FES, the stochastic fluctuations of the sensor signal, rather than its average value, are recorded and analyzed. Typical components of such fluctuations are due to interactions at the microscopic level. Proper statistical analysis provides optimum sensory...

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  • Enhanced visible light-activated gas sensing properties of nanoporous copper oxide thin films

    Metal oxide gas sensors are popular chemoresistive sensors. They are used for numerous tasks, including environmental and safety monitoring. Some gas-sensing materials exhibit photo-induced properties that can be utilized for enhanced gas detection by modifying the sensor selectivity and sensitivity when illuminated by light. Here, we present the gas sensing characteristics of highly nanoporous Cu2O thin films towards both electrophilic...

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