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Titlebook: Emerging Sustainable Nanomaterials for Biomedical Applications; Seema Garg,Amrish Chandra,Suresh Sagadevan Book 2024 The Editor(s) (if app

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https://doi.org/10.1007/978-3-663-15870-7 type of metal and metal oxide-based sensors will be made of nano-meter size for an enhanced output of its performance. The key highlights are: they are non-toxic, readily available, synthesized easily and cost effective. The bio-medical applications of these metal and metal oxide-based sensors are detailed more in this chapter.
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Metal and Metal Oxide Enabled Sensors for Biomedical Applications, type of metal and metal oxide-based sensors will be made of nano-meter size for an enhanced output of its performance. The key highlights are: they are non-toxic, readily available, synthesized easily and cost effective. The bio-medical applications of these metal and metal oxide-based sensors are detailed more in this chapter.
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Metrology for Inclusive Growth of Indiaancements and improvements in TiO. nanostructures by making hybrid nanostructures and heterostructures for conquering the aforementioned barriers to obtain good photocatalytic activity, as well as the capacity to prevent electron–hole pair recombination, are explored.
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Photocatalytic TiO2 Nanomaterial to Reduce Greenhouse Gases,ancements and improvements in TiO. nanostructures by making hybrid nanostructures and heterostructures for conquering the aforementioned barriers to obtain good photocatalytic activity, as well as the capacity to prevent electron–hole pair recombination, are explored.
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Synthesis of Silicon Quantum Dots for Bioimaging Applications and Their Impact on Public Health,ize and emission control. Considering the toxicity concerns, Si QDs are promising substitutes for cadmium-based QDs in optoelectronics and deep-tissue imaging. QD attributes can be tailored using colloidal and hydrothermal method. Hydrosilylation and surface modification improve Si QD biocompatibili
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Silica Nanoparticle for the Treatment of Bacterial Infections,ective therapy. The use of nanoparticle-based antibacterial therapy and diagnostics is now seen as one of the most effective approaches to overcoming the problems of infections caused by bacteria. One approach to overcoming this limitation is to utilise nanoparticles which can effectively react with
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