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Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications

This paper describes the effective fabrication of an inverse opal (IO) structure for plasmon-induced hyperthermia applications using silver nanoparticles (AgNPs) doped in a conducting polymer of poly(3,4-ethylene dioxythiophene) (PEDOT). Indium tin oxide (ITO) substrates were firstly modified electr...

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Autores principales: Le, Quang-Hai, Tran, Thu-Uyen, Dinh, Van-Tuan, Nguyen, Hoai-Nam, Pham, Hong-Nam, Nguyen, Xuan-Truong, Nguyen, Luong-Lam, Dinh, Thi-Mai-Thanh, Nguyen, Van-Quynh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9942106/
https://www.ncbi.nlm.nih.gov/pubmed/36825287
http://dx.doi.org/10.1039/d3ra00342f
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author Le, Quang-Hai
Tran, Thu-Uyen
Dinh, Van-Tuan
Nguyen, Hoai-Nam
Pham, Hong-Nam
Nguyen, Xuan-Truong
Nguyen, Luong-Lam
Dinh, Thi-Mai-Thanh
Nguyen, Van-Quynh
author_facet Le, Quang-Hai
Tran, Thu-Uyen
Dinh, Van-Tuan
Nguyen, Hoai-Nam
Pham, Hong-Nam
Nguyen, Xuan-Truong
Nguyen, Luong-Lam
Dinh, Thi-Mai-Thanh
Nguyen, Van-Quynh
author_sort Le, Quang-Hai
collection PubMed
description This paper describes the effective fabrication of an inverse opal (IO) structure for plasmon-induced hyperthermia applications using silver nanoparticles (AgNPs) doped in a conducting polymer of poly(3,4-ethylene dioxythiophene) (PEDOT). Indium tin oxide (ITO) substrates were firstly modified electrochemically by a layer of the inverse opal structure of PEDOT (IO-PEDOT). These as-prepared electrodes were subsequently used as working electrodes for electrodepositing AgNPs. The presence of plasmonic AgNPs doped inside a polymer network caused the hybrid of IO-PEDOT and AgNPs to generate significantly more heat than thin-film PEDOT, thin-film PEDOT/AgNPs, and IO-PEDOT under 532 nm laser irradiation. This is attributed to the synergistic effect of the large active area inverse opal structure and doped AgNPs, which exhibit more thermal energy and heat faster than the individual component structures. These findings point to a wide range of potential applications for hybrid IO-PEDOT/AgNPs in hyperthermia treatment.
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spelling pubmed-99421062023-02-22 Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications Le, Quang-Hai Tran, Thu-Uyen Dinh, Van-Tuan Nguyen, Hoai-Nam Pham, Hong-Nam Nguyen, Xuan-Truong Nguyen, Luong-Lam Dinh, Thi-Mai-Thanh Nguyen, Van-Quynh RSC Adv Chemistry This paper describes the effective fabrication of an inverse opal (IO) structure for plasmon-induced hyperthermia applications using silver nanoparticles (AgNPs) doped in a conducting polymer of poly(3,4-ethylene dioxythiophene) (PEDOT). Indium tin oxide (ITO) substrates were firstly modified electrochemically by a layer of the inverse opal structure of PEDOT (IO-PEDOT). These as-prepared electrodes were subsequently used as working electrodes for electrodepositing AgNPs. The presence of plasmonic AgNPs doped inside a polymer network caused the hybrid of IO-PEDOT and AgNPs to generate significantly more heat than thin-film PEDOT, thin-film PEDOT/AgNPs, and IO-PEDOT under 532 nm laser irradiation. This is attributed to the synergistic effect of the large active area inverse opal structure and doped AgNPs, which exhibit more thermal energy and heat faster than the individual component structures. These findings point to a wide range of potential applications for hybrid IO-PEDOT/AgNPs in hyperthermia treatment. The Royal Society of Chemistry 2023-02-21 /pmc/articles/PMC9942106/ /pubmed/36825287 http://dx.doi.org/10.1039/d3ra00342f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Le, Quang-Hai
Tran, Thu-Uyen
Dinh, Van-Tuan
Nguyen, Hoai-Nam
Pham, Hong-Nam
Nguyen, Xuan-Truong
Nguyen, Luong-Lam
Dinh, Thi-Mai-Thanh
Nguyen, Van-Quynh
Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
title Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
title_full Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
title_fullStr Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
title_full_unstemmed Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
title_short Fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
title_sort fabrication of an inverse opal structure of a hybrid metal-conducting polymer for plasmon-induced hyperthermia applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9942106/
https://www.ncbi.nlm.nih.gov/pubmed/36825287
http://dx.doi.org/10.1039/d3ra00342f
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