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Green route synthesis of antimicrobial nanoparticles using sewage alga bloom

2023-01-01 , H.M A. , Muhammad Nur Afnan Uda , Subash Chandra Bose Gopinath , Arsat Z.A. , Abdullah F. , Muttalib M.F.A. , Hashim M.K.R. , Uda Hashim , Muhammad Nur Aiman Uda , Yaakub A.R.W. , Ibrahim N.H. , Parmin N.A. , Tijjani Adam

Nanoparticles have a large surface area for their size and interact effectively with other particles. AgNPs may be created chemically, physically, or biologically. Biological techniques are considered the safest and cleanest since they use no toxic chemicals. Biological synthesis involves plant extracts, bacteria, fungus, algae, and other organisms. The algal production of AgNPs is of major interest. The abundance of algae and the ease with which it can be grown in a lab are two of the many reasons why it has become so popular as a nanoparticle production source. In this study, algae were employed as nanoparticles and antibacterial inhibitors against microbes.

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Synthesis and characterization of silver nanoparticle using sewage algal bloom extract using visual parameter analysis

2023-01-01 , Azwatul H.M. , Muhammad Nur Aiman Uda , Arsat Z.A. , Subash Chandra Bose Gopinath , Abdullah F. , Muttalib M.F.A. , Hashim M.K.R. , Uda M.N.A. , Muzamir Isa , Uda Hashim , Radi Wan Yaakub A. , Ibrahim N.H. , Parmin N.A. , Tijjani Adam

Silver nanoparticles (AgNP) must be comprehended in terms of synthesis and use to be utilized. The visual parameter such as 3D nano profiler shown with highest height of surface observed with average height was 517.90 nm. The scanning electron microscopy (SEM) revealed AgNPs to be highly crystalline, aggregated, spherical AgNPs of varying sizes. Lateral images of AgNP measure the height of AgNP to be 8.57 nm and 7.83 nm. It was shown that AgNP features depend on their fundamental elements, such as size, shape, chemical composition, etc. The review should aid scientists in their own research since it can aid in the meticulous preparation of experiments.