Investigating the role of reducing agents on mechanosynthesis of Au nanoparticles
Author:
Affiliation:
1. Departamento de Química Fundamental
2. Instituto de Química
3. Universidade de São Paulo
4. São Paulo
5. Brazil
6. BAM Federal Institute for Materials Research and Testing
7. 12489 Berlin
8. Germany
Abstract
The influence of reducing agents on the mechanochemical synthesis of Au nanoparticles differ significantly from analogous solution syntheses. Environmentally benign mechanochemical syntheses of metal nanoparticles therefore require dedicated studies.
Funder
Fundação de Amparo à Pesquisa do Estado de São Paulo
Jane ja Aatos Erkon Säätiö
Helsingin Yliopisto
Publisher
Royal Society of Chemistry (RSC)
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2020/CE/D0CE00826E
Reference67 articles.
1. Shape-Controlled Synthesis of Metal Nanocrystals: Simple Chemistry Meets Complex Physics?
2. P. H. C. Camargo , T. S.Rodrigues , A. G. M.da Silva and J.Wang , in Metallic Nanostructures , ed. Y. Xiong and X. Lu , Springer International Publishing, Cham , 2015 , pp. 49–74
3. Bimetallic Nanocrystals: Syntheses, Properties, and Applications
4. Shape Control of Colloidal Metal Nanocrystals
5. Synthesis of Colloidal Metal Nanocrystals: A Comprehensive Review on the Reductants
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