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In this book, we reported that amphiphilic dendrimer is stabilizing agent for the formation of trimetallic nanoparticles viz., Ag/Pd/AuNPs and Fe/Pt/RuNPs. The catalytic potential of these catalysts were examined by conducting the reduction of p-nitrotoluene & malachite green reactions and oxidation of 3, 3', 5, 5' - tetramethyl benzidine & Ascorbic acid. From the observed results, it reveals that the newly developed amphiphilic dendrimer stabilized/encapsulated homogeneous trimetallic nanoparticles can be an efficient catalyst to reduce the environmentally important organic pollutants.…mehr

Produktbeschreibung
In this book, we reported that amphiphilic dendrimer is stabilizing agent for the formation of trimetallic nanoparticles viz., Ag/Pd/AuNPs and Fe/Pt/RuNPs. The catalytic potential of these catalysts were examined by conducting the reduction of p-nitrotoluene & malachite green reactions and oxidation of 3, 3', 5, 5' - tetramethyl benzidine & Ascorbic acid. From the observed results, it reveals that the newly developed amphiphilic dendrimer stabilized/encapsulated homogeneous trimetallic nanoparticles can be an efficient catalyst to reduce the environmentally important organic pollutants. Further, one of the trimetallic nanoparticle catalyst containing Fe/Pt/RuNPs shows excellent peroxidase/oxidase-like activity for TMB and AA substrates
Autorenporträt
Dr.I.Pakrudheen received his Ph.D in the Department of Physical Chemistry, University of Madras, Tamilnadu, India. He has published 4 research papers and 1 book in the field of "Dendrimer Nanocatalysis". Presently, he is a Assistant Professor in Department of Chemistry, Veltech Hightech Dr.RR Dr.SR engineering College, Avadi, Tamilnadu, India.