Cargando…

Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites

Nanocomposite engineering of biosensors, biomaterials, and flexible electronics demand a highly tunable synthesis of precursor materials to achieve enhanced or desired properties. However, this process remains limited due to the need for proper synthesis-property strategies. Herein, we report on the...

Descripción completa

Detalles Bibliográficos
Autores principales: Torres-Ferrer, Luis R., López-Romero, José M., Mendez-Nonell, Juan, Rivas-Arreola, Maria J., Moreno-Ríos, Marisa, Ávila-Dávila, Erika O., Prokhorov, Evgeny, Kovalenko, Yuriy, Zárate-Triviño, Diana G., Revilla-Vazquez, Javier R., Meraz-Rios, Marco A., Luna-Barcenas, Gabriel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879739/
https://www.ncbi.nlm.nih.gov/pubmed/35215700
http://dx.doi.org/10.3390/polym14040788
_version_ 1784658969196756992
author Torres-Ferrer, Luis R.
López-Romero, José M.
Mendez-Nonell, Juan
Rivas-Arreola, Maria J.
Moreno-Ríos, Marisa
Ávila-Dávila, Erika O.
Prokhorov, Evgeny
Kovalenko, Yuriy
Zárate-Triviño, Diana G.
Revilla-Vazquez, Javier R.
Meraz-Rios, Marco A.
Luna-Barcenas, Gabriel
author_facet Torres-Ferrer, Luis R.
López-Romero, José M.
Mendez-Nonell, Juan
Rivas-Arreola, Maria J.
Moreno-Ríos, Marisa
Ávila-Dávila, Erika O.
Prokhorov, Evgeny
Kovalenko, Yuriy
Zárate-Triviño, Diana G.
Revilla-Vazquez, Javier R.
Meraz-Rios, Marco A.
Luna-Barcenas, Gabriel
author_sort Torres-Ferrer, Luis R.
collection PubMed
description Nanocomposite engineering of biosensors, biomaterials, and flexible electronics demand a highly tunable synthesis of precursor materials to achieve enhanced or desired properties. However, this process remains limited due to the need for proper synthesis-property strategies. Herein, we report on the ability to synthesize chitosan-gold nanocomposite thin films (CS/AuNP) with tunable properties by chemically reducing HAuCl(4) in chitosan solutions and different HAuCl(4)/sodium citrate molar relationships. The structure, electrical, and relaxation properties of nanocomposites have been investigated as a function of HAuCl(4)/sodium citrate molar relation. It was shown that gold particle size, conductivity, Vogel temperature (glass transition), and water content strongly depend upon HAuCl(4)/sodium citrate relationships. Two relaxation processes have been observed in nanocomposites; the α-relaxation process, related to a glass transition in wet CS/AuNP films, and the σ-relaxation related to the local diffusion process of ions in a disordered system. The ability to fine-tune both α- and σ-relaxations may be exploited in the proper design of functional materials for biosensors, biomaterials, and flexible electronics applications.
format Online
Article
Text
id pubmed-8879739
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88797392022-02-26 Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites Torres-Ferrer, Luis R. López-Romero, José M. Mendez-Nonell, Juan Rivas-Arreola, Maria J. Moreno-Ríos, Marisa Ávila-Dávila, Erika O. Prokhorov, Evgeny Kovalenko, Yuriy Zárate-Triviño, Diana G. Revilla-Vazquez, Javier R. Meraz-Rios, Marco A. Luna-Barcenas, Gabriel Polymers (Basel) Article Nanocomposite engineering of biosensors, biomaterials, and flexible electronics demand a highly tunable synthesis of precursor materials to achieve enhanced or desired properties. However, this process remains limited due to the need for proper synthesis-property strategies. Herein, we report on the ability to synthesize chitosan-gold nanocomposite thin films (CS/AuNP) with tunable properties by chemically reducing HAuCl(4) in chitosan solutions and different HAuCl(4)/sodium citrate molar relationships. The structure, electrical, and relaxation properties of nanocomposites have been investigated as a function of HAuCl(4)/sodium citrate molar relation. It was shown that gold particle size, conductivity, Vogel temperature (glass transition), and water content strongly depend upon HAuCl(4)/sodium citrate relationships. Two relaxation processes have been observed in nanocomposites; the α-relaxation process, related to a glass transition in wet CS/AuNP films, and the σ-relaxation related to the local diffusion process of ions in a disordered system. The ability to fine-tune both α- and σ-relaxations may be exploited in the proper design of functional materials for biosensors, biomaterials, and flexible electronics applications. MDPI 2022-02-17 /pmc/articles/PMC8879739/ /pubmed/35215700 http://dx.doi.org/10.3390/polym14040788 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Torres-Ferrer, Luis R.
López-Romero, José M.
Mendez-Nonell, Juan
Rivas-Arreola, Maria J.
Moreno-Ríos, Marisa
Ávila-Dávila, Erika O.
Prokhorov, Evgeny
Kovalenko, Yuriy
Zárate-Triviño, Diana G.
Revilla-Vazquez, Javier R.
Meraz-Rios, Marco A.
Luna-Barcenas, Gabriel
Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites
title Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites
title_full Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites
title_fullStr Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites
title_full_unstemmed Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites
title_short Tuning HAuCl(4)/Sodium Citrate Stoichiometry to Fabricate Chitosan-Au Nanocomposites
title_sort tuning haucl(4)/sodium citrate stoichiometry to fabricate chitosan-au nanocomposites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879739/
https://www.ncbi.nlm.nih.gov/pubmed/35215700
http://dx.doi.org/10.3390/polym14040788
work_keys_str_mv AT torresferrerluisr tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT lopezromerojosem tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT mendeznonelljuan tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT rivasarreolamariaj tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT morenoriosmarisa tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT aviladavilaerikao tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT prokhorovevgeny tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT kovalenkoyuriy tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT zaratetrivinodianag tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT revillavazquezjavierr tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT merazriosmarcoa tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites
AT lunabarcenasgabriel tuninghaucl4sodiumcitratestoichiometrytofabricatechitosanaunanocomposites