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- W4225598857 endingPage "194" @default.
- W4225598857 startingPage "167" @default.
- W4225598857 abstract "Nanomaterials (NM) are of interest due to their unique properties allowing for widespread applications. Physical and chemical approaches are the standard method of synthesis, but due to the negative aspects of traditional manufacturing protocols that can be energy expensive or use toxic chemicals, interest in biologically produced NMs is gaining traction. While plant-based NM synthesis is currently the most popular, there is a growing interest in using microbes to carry out this task. Bacteria are able to utilize the wide array of reducing and oxidizing powers in the cell to convert metal salts into NMs. Bacteria can produce NMs in a variety of structures including nanocrystals, nanowires, nanoparticles (spheres), and nanorods. These NMs may form extracellularly or intracellularly. NMs produced by bacteria to date have been comprised of silver, gold, selenium, tellurium, zinc, titanium, nickel, arsenic, tin, iron, platinum and cadmium or hetero atom mixtures thereof. There have been advances in controlling the shape and size of the metal(loid) NMs produced using bacteria, which is one of the most important aspects when producing NMs. Further research into those biomolecules that are important for the coating and stabilization of biologically produced nanoparticles is needed, and bacterial coats have been found to offer unique properties over traditional chemically synthesized metal(loid) NMs. Metal(loid) based NM production using microbes is a growing field that has made considerable advances in recent years." @default.
- W4225598857 created "2022-05-05" @default.
- W4225598857 creator A5076324446 @default.
- W4225598857 creator A5089151342 @default.
- W4225598857 date "2022-01-01" @default.
- W4225598857 modified "2023-10-12" @default.
- W4225598857 title "Bacterial Production of Metal(loid) Nanostructures" @default.
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