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Impact of Graphene Quantum Dots as Catalyst,cient exciton separation at the atomically sharp interface enable sympathetic the fundamental catalytic mechanism of GQDs in a variety of applications. The synthesis, modification, and application of heterogeneous catalysts based on GQDs for general water splitting, as photocatalysts, hydrogen evolu
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Tailor-Made Graphene Quantum Dots for Textile Applications,e spherical nanoparticles with particle sizes ranging from 1 to 10 nm, have advantageous qualities like high-temperature resistance, exceptional electrical and thermal conductivity, high flexibility, corrosion resistance, UV blocking, and high adsorption rate. Fabrics with anti-microbial coatings wi
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Healthcare and Biological Application of Graphene Quantum Dots, synthesis of GQDs and their applications as probes or carriers for sensors, imaging, medication delivery, and disease diagnostics are given in this chapter. Contemporary developments in GQD treatment are also discussed, along with any possible toxicity for both in vitro and in vivo testing. Bioimag
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Biocompatibility and Toxicity of Graphene Quantum Dots,organic photosensitizers, such as chemical inertness, high water solubility, photostability, the interaction between optoelectronic features and shape/size, good donors in the fluorescence resonance energy transfer process, high stability in physiological conditions, specific accumulation at the tar
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Future Research on Graphene Quantum Dots,of functional groups, and ease of functionalization with organic, inorganic, or biological molecules, GQDs are used as electrode modifiers. Additionally, they are chemically stable, strong, inert, robust, and photo-resistant against photo-bleaching. Their solubility in water-based solvents has had a
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