Abstract

Modern material processing methods are revolutionizing the biomedical and health care sectors while offering previously unexplored possibilities for the development of cutting-edge biomaterials. The development of materials with distinctive optical, mechanical, and biological characteristics can be made feasible by innovative techniques such as chemical vapor deposition (CVD) & sol-gel processing. These developments have a wide range of applications such as biological sensing technologies, drugs delivery systems, as well as tissue engineering. The present investigation examines the application of chemical vapor deposition (CVD) and sol-gel techniques for producing biomaterials customized for certain biomedical applications. The development of nanomaterials, such as mesoporous silica nanoparticles, biologically active glass nanoparticles, and graphene-based coatings, will be discussed in particular. These materials were chosen for their adaptability and demonstrate promise in a number of medical domains, including the advancement of diagnostic imaging techniques, medication delivery systems, and wound healing processes.

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