Abstract

Nanoscale metals are widely used in many fields such as environment, medicine, and engineering that synthesis of nanoscale metals is a timely topic. At present, nanoscale metals are mainly synthesized by chemical methods that have unintended effects such as environmental pollution, large energy consumption, and potential health problems. In response to these challenges, green synthesis, which uses plant extracts instead of industrial chemical agents to reduce metal ions, has been developed. Green synthesis is more beneficial than traditional chemical synthesis because it costs less, decreases pollution, and improves environmental and human health safety. In this review, current developments in the green synthesis of nanoparticles of gold (Au NPs), silver (Ag NPs), palladium (Pd NPs), copper (Cu NPs), and iron and its oxide (Fe NPs) were evaluated. Major findings reveal the complexity in geographical and seasonal distributions of plants and their compositions that green synthesis is limited by time and place of production as well as issues with low purity and poor yield. However, considering current environmental problems and pollution associated with chemical synthesis, green synthesis offers alternative development prospects and potential applications.

Keywords

NanotechnologyEnvironmental pollutionGreen chemistryNanoparticleMaterials sciencePollutionEnvironmental scienceCatalysisChemistryEnvironmental protectionReaction mechanismOrganic chemistry

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Publication Info

Year
2022
Type
article
Volume
26
Pages
102336-102336
Citations
1234
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Closed

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Shuaixuan Ying, Zhenru Guan, Polycarp C. Ofoegbu et al. (2022). Green synthesis of nanoparticles: Current developments and limitations. Environmental Technology & Innovation , 26 , 102336-102336. https://doi.org/10.1016/j.eti.2022.102336

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DOI
10.1016/j.eti.2022.102336