Green Synthesis of Metal and Metal Oxide Nanoparticles: Principles of Green Chemistry and Raw Materials

Зеленый синтез металлических наночастиц и наночастиц оксидов металлов: принципы зеленой химии и сырье
Mu. Naushad, L.M. Soltys, Ostap Olkhovyy, Тетяна Татарчук
2021-10-31

biological precursorsgreen synthesismagnetic hyperthermiamagnetic nanoparticlesmetal oxide nanoparticles
Increased request for metal and metal oxide nanoparticles nanoparticles has led to their large-scale production using high-energy methods with various toxic solvents. This cause environmental contamination, thus eco-friendly “green” synthesis methods has become necessary. An alternative way to synthesize metal nanoparticles includes using bioresources, such as plants and plant products, bacteria, fungi, yeast, algae, etc. “Green” synthesis has low toxicity, is safe for human health and environment compared to other methods, meaning it is the best approach for obtaining metal and metal oxide nanoparticles. This review reveals 12 principles of “green” chemistry and examples of biological components suitable for “green” synthesis, as well as modern scientific research of eco-friendly synthesis methods of magnetic and metal nanoparticles. Particularly, using extracts of green tea, fruits, roots, leaves, etc., to obtain Fe3O4 NPs. The various precursors as egg white (albumen), leaf and fruit extracts, etc., can be used for the „green” synthesis of spinel magnetic NPs. “Green” nanoparticles are being widely used as antimicrobials, photocatalysts and adsorbents. “Green” magnetic nanoparticles demonstrate low toxicity and high biocompatibility, which allows for their biomedical application, especially for targeted drug delivery, contrast imaging and magnetic hyperthermia applications. The synthesis of silver, gold, platinum and palladium nanoparticles using extracts from fungi, red algae, fruits, etc., has been described.
1
Biological resources—including plants, plant products, bacteria, fungi, yeast, and algae—can serve as materials for synthesizing metal and metal oxide nanoparticles.
2
Conventional large-scale nanoparticle production can involve high energy use and toxic solvents, motivating safer green synthesis approaches.
3
Green magnetic nanoparticles exhibit low toxicity and high biocompatibility, supporting applications in targeted drug delivery, contrast imaging, and magnetic hyperthermia.
4
Green-synthesized nanoparticles are used as antimicrobials, photocatalysts, and adsorbents; biological extracts have also enabled synthesis of silver, gold, platinum, and palladium nanoparticles.
5
Plant-derived extracts, egg white, and other bioresources can produce Fe3O4 and spinel magnetic nanoparticles.
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The review summarizes the 12 principles of green chemistry and biological components used for environmentally friendly nanoparticle synthesis.

Metal and metal oxide nanoparticles synthesized via green (bioresource-based) methods

Principles, biological precursors, eco-friendly synthesis methods, and resulting properties and applications of the nanoparticles

Publication Details
Publication Date
2021-10-31
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Authors
Mu. Naushad
L.M. Soltys
Ostap Olkhovyy
Тетяна Татарчук
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