Recent Advances in Nano Silver Catalysis for Organic Transformations

Download PDF
Abstract: This account explains three types of reactions to form homogeneous or heterogeneous nanocatalysts; coupling reaction, reduction reaction, and cascade reaction. Catalyst is an important technology and has various advantages. Metal oxides, or metals, placed on a support or carrier in a different state, are the catalytically active part of a solid catalyst. Particles that range in size from 1 to 100 nm are referred to as metal nanoparticles, and they are frequently used in synthetic organic chemistry. Based on their characteristics, nanocatalysts have several benefits, including increased chemical reaction selectivity and efficiency. Furthermore, this report shows different example that scientists exploring nanocatalysts through coupling reactions, reduction reactions, and cascade reactions, and different ways, such as experiments or filter paper to produce catalysts. Discovering that nanocatalysts not only have the function of accelerating but also help the treatment of tumors. In the future, nanocatalysts will find more applications in other industries. It will enable people to succeed more highly in a variety of industries.
Keywords: Organic Reactions, nanoparticles, catalyst.
APA Citation: Yuxuan Du (2024). Recent Advances in Nano Silver Catalysis for Organic Transformations. Transactions on Materials, Biotechnology and Life Sciences, 4(1), 102-108. https://doi.org/10.62051/kzr77t36

References

  1. Lumen Learning Introductory Chemistry. https:// uen.pressbooks.pub/ introductorychemistry/chapter/catalysis/
  2. BYJU’S, coupling reaction. https:// byjus.com/chemistry/coupling-reaction/
  3. Fihri A, Bouhrara M, Nekoueishahraki B, Basseta J-M and Polshettiwar V 2011 Chemical Society Reviews 40 5181
  4. Cao J and Tian H 2018 Chemistry - an Asian Journal 13 1561-1569
  5. Pharmaxchange.info. (2012) hydroamination. https://pharmaxchange.info/2012/08/hydroamination-direct-addition-of-amines-to-alkenes-and-alkynes/
  6. Mario P et al 2020 Catalysts 10 1343
  7. Wang X et al 2024 ACS Applied Nano Materials 7 3210–3219
  8. BYJU’S, reduction reaction. https:// byjus.com/chemistry/reduction-reaction/
  9. Heidari H 2018 Journal of Cluster Science 29 475–481
  10. Mohini M et al 2018 ChemistrySelect 3 2882–2887
  11. Li Y et al. Frontiers in Chemistry, vol. 7, 8 Jan. 2020,
  12. Bozell JJ and Petersen GR 2010 Green Chem. 12 539-554
  13. Naapuri J M, Losada-Garcia N, Deska J and Palomo J M 2022 Nanoscale 14 5701–5715
  14. Sangeeta M et al 2023 Inorganic Chemistry 62 6092–6101
  15. Gao S et al 2018 Advanced Science 6 12