Investigating the role of reducing agents on mechanosynthesis of Au nanoparticles

Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factors, including the choice of stabilising and reducing agents. By selectively manipulating these species, it is possible to control NP characteristics through solution-phase synthesis strategies. It is n...

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Veröffentlicht in:CrystEngComm 2020-10, Vol.22 (38), p.6261-6267
Hauptverfasser: de Oliveira, Paulo F. M, Michalchuk, Adam A. L, Marquardt, Julien, Feiler, Torvid, Prinz, Carsten, Torresi, Roberto M, Camargo, Pedro H. C, Emmerling, Franziska
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container_end_page 6267
container_issue 38
container_start_page 6261
container_title CrystEngComm
container_volume 22
creator de Oliveira, Paulo F. M
Michalchuk, Adam A. L
Marquardt, Julien
Feiler, Torvid
Prinz, Carsten
Torresi, Roberto M
Camargo, Pedro H. C
Emmerling, Franziska
description Control over the bottom up synthesis of metal nanoparticles (NP) depends on many experimental factors, including the choice of stabilising and reducing agents. By selectively manipulating these species, it is possible to control NP characteristics through solution-phase synthesis strategies. It is not known, however, whether NPs produced from mechanochemical syntheses are governed by the same rules. Using the Au NPs mechanosynthesis as a model system, we investigate how a series of common reducing agents affect both the reduction kinetics and size of Au NPs. It is shown that the relative effects of reducing agents on mechanochemical NP synthesis differ significantly from their role in analogous solution-phase reactions. Hence, strategies developed for control over NP growth in solution are not directly transferrable to environmentally benign mechanochemical approaches. This work demonstrates a clear need for dedicated, systematic studies on NP mechanosynthesis. 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.
doi_str_mv 10.1039/d0ce00826e
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subjects Gold
Nanoparticles
Reducing agents
title Investigating the role of reducing agents on mechanosynthesis of Au nanoparticles
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