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Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes

Amphiphilic nonionic ligands, synthesized with a fixed hydrophobic moiety formed by a thiolated alkyl chain and an aromatic ring, and with a hydrophilic tail composed of a variable number of oxyethylene units, were used to functionalize spherical gold nanoparticles (AuNPs) in water. Steady-state and...

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Autores principales: Paulo Coelho, Joao, Osío Barcina, José, Junquera, Elena, Aicart, Emilio, Tardajos, Gloria, Gómez-Graña, Sergio, Cruz-Gil, Pablo, Salgado, Cástor, Díaz-Núñez, Pablo, Peña-Rodríguez, Ovidio, Guerrero-Martínez, Andrés
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5869659/
https://www.ncbi.nlm.nih.gov/pubmed/29547539
http://dx.doi.org/10.3390/nano8030168
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author Paulo Coelho, Joao
Osío Barcina, José
Junquera, Elena
Aicart, Emilio
Tardajos, Gloria
Gómez-Graña, Sergio
Cruz-Gil, Pablo
Salgado, Cástor
Díaz-Núñez, Pablo
Peña-Rodríguez, Ovidio
Guerrero-Martínez, Andrés
author_facet Paulo Coelho, Joao
Osío Barcina, José
Junquera, Elena
Aicart, Emilio
Tardajos, Gloria
Gómez-Graña, Sergio
Cruz-Gil, Pablo
Salgado, Cástor
Díaz-Núñez, Pablo
Peña-Rodríguez, Ovidio
Guerrero-Martínez, Andrés
author_sort Paulo Coelho, Joao
collection PubMed
description Amphiphilic nonionic ligands, synthesized with a fixed hydrophobic moiety formed by a thiolated alkyl chain and an aromatic ring, and with a hydrophilic tail composed of a variable number of oxyethylene units, were used to functionalize spherical gold nanoparticles (AuNPs) in water. Steady-state and time-resolved fluorescence measurements of the AuNPs in the presence of α-cyclodextrin (α-CD) revealed the formation of supramolecular complexes between the ligand and macrocycle at the surface of the nanocrystals. The addition of α-CD induced the formation of inclusion complexes with a high apparent binding constant that decreased with the increasing oxyethylene chain length. The formation of polyrotaxanes at the surface of AuNPs, in which many α-CDs are trapped as hosts on the long and linear ligands, was demonstrated by the formation of large and homogeneous arrays of self-assembled AuNPs with hexagonal close packing, where the interparticle distance increased with the length of the oxyethylene chain. The estimated number of α-CDs per polyrotaxane suggests a high rigidization of the ligand upon complexation, allowing for nearly perfect control of the interparticle distance in the arrays. This degree of supramolecular control was extended to arrays formed by AuNPs stabilized with polyethylene glycol and even to binary arrays. Electromagnetic simulations showed that the enhancement and distribution of the electric field can be finely controlled in these plasmonic arrays.
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spelling pubmed-58696592018-03-28 Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes Paulo Coelho, Joao Osío Barcina, José Junquera, Elena Aicart, Emilio Tardajos, Gloria Gómez-Graña, Sergio Cruz-Gil, Pablo Salgado, Cástor Díaz-Núñez, Pablo Peña-Rodríguez, Ovidio Guerrero-Martínez, Andrés Nanomaterials (Basel) Article Amphiphilic nonionic ligands, synthesized with a fixed hydrophobic moiety formed by a thiolated alkyl chain and an aromatic ring, and with a hydrophilic tail composed of a variable number of oxyethylene units, were used to functionalize spherical gold nanoparticles (AuNPs) in water. Steady-state and time-resolved fluorescence measurements of the AuNPs in the presence of α-cyclodextrin (α-CD) revealed the formation of supramolecular complexes between the ligand and macrocycle at the surface of the nanocrystals. The addition of α-CD induced the formation of inclusion complexes with a high apparent binding constant that decreased with the increasing oxyethylene chain length. The formation of polyrotaxanes at the surface of AuNPs, in which many α-CDs are trapped as hosts on the long and linear ligands, was demonstrated by the formation of large and homogeneous arrays of self-assembled AuNPs with hexagonal close packing, where the interparticle distance increased with the length of the oxyethylene chain. The estimated number of α-CDs per polyrotaxane suggests a high rigidization of the ligand upon complexation, allowing for nearly perfect control of the interparticle distance in the arrays. This degree of supramolecular control was extended to arrays formed by AuNPs stabilized with polyethylene glycol and even to binary arrays. Electromagnetic simulations showed that the enhancement and distribution of the electric field can be finely controlled in these plasmonic arrays. MDPI 2018-03-16 /pmc/articles/PMC5869659/ /pubmed/29547539 http://dx.doi.org/10.3390/nano8030168 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Paulo Coelho, Joao
Osío Barcina, José
Junquera, Elena
Aicart, Emilio
Tardajos, Gloria
Gómez-Graña, Sergio
Cruz-Gil, Pablo
Salgado, Cástor
Díaz-Núñez, Pablo
Peña-Rodríguez, Ovidio
Guerrero-Martínez, Andrés
Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes
title Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes
title_full Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes
title_fullStr Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes
title_full_unstemmed Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes
title_short Supramolecular Control over the Interparticle Distance in Gold Nanoparticle Arrays by Cyclodextrin Polyrotaxanes
title_sort supramolecular control over the interparticle distance in gold nanoparticle arrays by cyclodextrin polyrotaxanes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5869659/
https://www.ncbi.nlm.nih.gov/pubmed/29547539
http://dx.doi.org/10.3390/nano8030168
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