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Selenium nanomaterials: applications in electronics, catalysis and sensors.

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    This review explores selenium nanoparticles (SeNPs), detailing their synthesis, properties, and diverse applications in electronics, optics, catalysis, and sensors. SeNPs offer unique characteristics for advanced technological uses.

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    Area of Science:

    • Materials Science
    • Nanotechnology
    • Chemistry

    Background:

    • Selenium nanoparticles (SeNPs) are emerging nanomaterials with unique physicochemical properties.
    • Understanding SeNPs is crucial for developing advanced applications in various scientific fields.

    Purpose of the Study:

    • To review the synthesis and functionalization of selenium nanoparticles.
    • To discuss the impact of experimental conditions on SeNP properties.
    • To explore the applications of SeNPs in electronics, optics, catalysis, and sensors.

    Main Methods:

    • Literature review of synthesis and functionalization techniques for SeNPs.
    • Analysis of structure-property relationships in SeNPs.
    • Compilation of SeNP applications across different research domains.

    Main Results:

    • SeNPs can be synthesized and functionalized with controllable physicochemical properties (size, surface area, shape).
    • Experimental conditions significantly influence SeNP characteristics.
    • SeNPs exhibit promising electrical and optical properties for diverse applications.

    Conclusions:

    • Selenium nanoparticles possess unique properties making them suitable for advanced applications.
    • Further research into SeNPs will drive innovation in nanotechnology and materials science.