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Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH

Manganese powder with a suitable potential ([Image: see text] , −1.19 V) has never been investigated for the reduction of Au(3+) ([Image: see text] , 1.00 V). In this study, we have utilized [Image: see text] and low pH dependent [Image: see text] for the polyethylene glycol stabilized gold nanopris...

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Autores principales: Bharti, Kanika, Sk, Md Azimuddin, Sadhu, Kalyan K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10334414/
https://www.ncbi.nlm.nih.gov/pubmed/37441245
http://dx.doi.org/10.1039/d3na00292f
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author Bharti, Kanika
Sk, Md Azimuddin
Sadhu, Kalyan K.
author_facet Bharti, Kanika
Sk, Md Azimuddin
Sadhu, Kalyan K.
author_sort Bharti, Kanika
collection PubMed
description Manganese powder with a suitable potential ([Image: see text] , −1.19 V) has never been investigated for the reduction of Au(3+) ([Image: see text] , 1.00 V). In this study, we have utilized [Image: see text] and low pH dependent [Image: see text] for the polyethylene glycol stabilized gold nanoprism synthesis by reducing AuCl(−)(4) in the presence of thiol terminated polyethylene glycol as the stabilizing agent. The synthetic methodology for gold nanoprisms has been optimized by pH and Cl(−) ion combination. Time dependent absorbance studies have been conducted to demonstrate the role of various reaction parameters such as the stabilizing agent, HCl concentration, temperature, and Mn metal. The synthesized gold nanoprism has been further utilized as a seed for nucleic acid and selected amino acid mediated edge and surface growth, respectively.
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spelling pubmed-103344142023-07-12 Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH Bharti, Kanika Sk, Md Azimuddin Sadhu, Kalyan K. Nanoscale Adv Chemistry Manganese powder with a suitable potential ([Image: see text] , −1.19 V) has never been investigated for the reduction of Au(3+) ([Image: see text] , 1.00 V). In this study, we have utilized [Image: see text] and low pH dependent [Image: see text] for the polyethylene glycol stabilized gold nanoprism synthesis by reducing AuCl(−)(4) in the presence of thiol terminated polyethylene glycol as the stabilizing agent. The synthetic methodology for gold nanoprisms has been optimized by pH and Cl(−) ion combination. Time dependent absorbance studies have been conducted to demonstrate the role of various reaction parameters such as the stabilizing agent, HCl concentration, temperature, and Mn metal. The synthesized gold nanoprism has been further utilized as a seed for nucleic acid and selected amino acid mediated edge and surface growth, respectively. RSC 2023-06-20 /pmc/articles/PMC10334414/ /pubmed/37441245 http://dx.doi.org/10.1039/d3na00292f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Bharti, Kanika
Sk, Md Azimuddin
Sadhu, Kalyan K.
Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH
title Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH
title_full Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH
title_fullStr Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH
title_full_unstemmed Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH
title_short Seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low pH
title_sort seed free synthesis of polyethylene glycol stabilized gold nanoprisms exploiting manganese metal at low ph
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10334414/
https://www.ncbi.nlm.nih.gov/pubmed/37441245
http://dx.doi.org/10.1039/d3na00292f
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