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    Low-Dimensional 2D Metal Oxides and their Integration into Conductometric Gas Sensors

    AvElisabetta Comini,W.G.C. Kumarage

    Häftad, Engelska, 2027

    Del i serien Metal Oxides

    2 536 kr

    Kommande

    Beskrivning

    Low-Dimensional 2D Metal Oxides and their Integration into Conductometric Gas Sensors provides a detailed description of the basic properties of 2D metal oxides before moving to a comparison of different low-dimensional MOXs and a discussion of synthesis and characterization methods. The book then investigates engineering and design, fundamental theories, mechanisms, properties, and analysis techniques of chemical gas sensors. Moreover, it describes materials and preparation methods for doping, decoration/functionalization, composite and heterostructure MOXs, which are useful in designing highly sensitive and selective sensing devices.

    To provide sufficient knowledge to the readers about the actual gas sensing mechanism, in-situ characterization methods are included. Lastly, future directions of 2D MOXs such as sensor arrays, electronic noses, research expansion, and market expansion are described.



    • Provides a comprehensive understanding of low-dimensional MOXs
    • Explains the fundamental characterization techniques of 2D MOXs (SEM, AFM, XRD, HR-TEM, XRF, EDX, XPS, SAED, RAMN, DFT)
    • Thoroughly explores 2D MOX conductometric gas sensors applications
    • Considers future directions in 2D MOX gas sensors

    Produktinformation

    • Utgivningsdatum:2027-08-01
    • Mått:152 x 229 x undefined mm
    • Vikt:450 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Metal Oxides
    • Antal sidor:550
    • Förlag:Elsevier Science
    • ISBN:9780443222764

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Elisabetta Comini is a specialist in the growth of metal oxides, particularly nanowires, thin films and the measurement of their electronic, functional, and structural properties. She is the head of the SENSOR Laboratory at the University of Brescia. She serves as a reviewer for various international journals and is part of the technical program committee of several conferences in chemical sensing. W.G.C. Kumarage is a senior lecturer in the Department of Physics and Electronics at the University of Kelaniya, Sri Lanka. His research interests lie in nanoscience, semiconductor physics, and nanostructured magnetic gas sensors.

    Innehållsförteckning

    • PART 1 Introduction in low dimensional metal oxides and their application in gas sensors1. Low dimensional 2D metal oxides and their properties2. Size effect in low dimensional metal oxides3. Advantages of low dimensional 2D metal oxidesPART 2 Synthesis of 2D metal oxides4. Features of 2D nanomaterials synthesis5. Bottom-up approach6. Top-down approach7. Liquid metal strategyPART 3 Features of gas sensors based on low dimensional 2D MOXs8. Advantages of 2D structures for gas sensor design9. Features of the fabrication of 2D based gas sensors10. Features of gas sensing effect in 2D structuresPART 4 Progress of gas sensors based on low dimensional 2D MOXs11. Progress of 2D MOXs in conductometric chemical gas sensing12. Engineering of gas sensors based on 2D MOXsPART 5 Gas sensors based on porous 2D metal oxides13. Advantages of porous 2D structures for gas sensor design14. Synthesis of porous 2D metal oxides15. The role of holes in the surface reactivity of 2D metal oxides16. Performances of gas sensors based on porous 2D metal oxidesPART 6 Gas sensors based on 3D agglomerated nanoflakes and nanosheets17. Synthesis and characterization of 3D structures18. Features of gas sensing effect19. Performances of gas sensors based20. Advantages and disadvantages of application in gas sensorsPART 7 Hybrid structures based on 2D materials in conductometric gas sensors21. Conductometric gas sensors and sensing mechanisms22. Metal oxides - 2D graphene and reduced graphene oxide (rGO)23. Metal oxides - 2D transition metal dichalcogenides (TMDs)24. Metal-organic frameworks25. Challenges in hybrid material based gas sensing