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Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography

We report the generation of gold nanoparticles (AuNPs) from the aqueous solution of chloro(2,2′,2″-terpyridine)gold(III) ion ([Au(tpy)Cl](2+)) through X-ray radiolysis and optical excitation at a synchrotron. The original purpose of the experiment was to investigate the photoinduced structural chang...

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Autores principales: Ki, Hosung, Park, Sungjun, Eom, Seunghwan, Gu, Jain, Kim, Siin, Kim, Changwon, Ahn, Chi Woo, Choi, Minseo, Ahn, Sena, Ahn, Doo-Sik, Choi, Jungkweon, Baik, Mu-Hyun, Ihee, Hyotcherl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582564/
https://www.ncbi.nlm.nih.gov/pubmed/32992497
http://dx.doi.org/10.3390/ijms21197125
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author Ki, Hosung
Park, Sungjun
Eom, Seunghwan
Gu, Jain
Kim, Siin
Kim, Changwon
Ahn, Chi Woo
Choi, Minseo
Ahn, Sena
Ahn, Doo-Sik
Choi, Jungkweon
Baik, Mu-Hyun
Ihee, Hyotcherl
author_facet Ki, Hosung
Park, Sungjun
Eom, Seunghwan
Gu, Jain
Kim, Siin
Kim, Changwon
Ahn, Chi Woo
Choi, Minseo
Ahn, Sena
Ahn, Doo-Sik
Choi, Jungkweon
Baik, Mu-Hyun
Ihee, Hyotcherl
author_sort Ki, Hosung
collection PubMed
description We report the generation of gold nanoparticles (AuNPs) from the aqueous solution of chloro(2,2′,2″-terpyridine)gold(III) ion ([Au(tpy)Cl](2+)) through X-ray radiolysis and optical excitation at a synchrotron. The original purpose of the experiment was to investigate the photoinduced structural changes of [Au(tpy)Cl](2+) upon 400 nm excitation using time-resolved X-ray liquidography (TRXL). Initially, the TRXL data did not show any signal that would suggest structural changes of the solute molecule, but after an induction time, the TRXL data started to show sharp peaks and valleys. In the early phase, AuNPs with two types of morphology, dendrites, and spheres, were formed by the reducing action of hydrated electrons generated by the X-ray radiolysis of water, thereby allowing the detection of TRXL data due to the laser-induced lattice expansion and relaxation of AuNPs. Along with the lattice expansion, the dendritic and spherical AuNPs were transformed into smaller, raspberry-shaped AuNPs of a relatively uniform size via ablation by the optical femtosecond laser pulse used for the TRXL experiment. Density functional theory calculations confirm that the reduction potential of the metal complex relative to the hydration potential of X-ray-generated electrons determines the facile AuNP formation observed for [Au(tpy)Cl](2+).
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spelling pubmed-75825642020-10-29 Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography Ki, Hosung Park, Sungjun Eom, Seunghwan Gu, Jain Kim, Siin Kim, Changwon Ahn, Chi Woo Choi, Minseo Ahn, Sena Ahn, Doo-Sik Choi, Jungkweon Baik, Mu-Hyun Ihee, Hyotcherl Int J Mol Sci Article We report the generation of gold nanoparticles (AuNPs) from the aqueous solution of chloro(2,2′,2″-terpyridine)gold(III) ion ([Au(tpy)Cl](2+)) through X-ray radiolysis and optical excitation at a synchrotron. The original purpose of the experiment was to investigate the photoinduced structural changes of [Au(tpy)Cl](2+) upon 400 nm excitation using time-resolved X-ray liquidography (TRXL). Initially, the TRXL data did not show any signal that would suggest structural changes of the solute molecule, but after an induction time, the TRXL data started to show sharp peaks and valleys. In the early phase, AuNPs with two types of morphology, dendrites, and spheres, were formed by the reducing action of hydrated electrons generated by the X-ray radiolysis of water, thereby allowing the detection of TRXL data due to the laser-induced lattice expansion and relaxation of AuNPs. Along with the lattice expansion, the dendritic and spherical AuNPs were transformed into smaller, raspberry-shaped AuNPs of a relatively uniform size via ablation by the optical femtosecond laser pulse used for the TRXL experiment. Density functional theory calculations confirm that the reduction potential of the metal complex relative to the hydration potential of X-ray-generated electrons determines the facile AuNP formation observed for [Au(tpy)Cl](2+). MDPI 2020-09-27 /pmc/articles/PMC7582564/ /pubmed/32992497 http://dx.doi.org/10.3390/ijms21197125 Text en © 2020 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
Ki, Hosung
Park, Sungjun
Eom, Seunghwan
Gu, Jain
Kim, Siin
Kim, Changwon
Ahn, Chi Woo
Choi, Minseo
Ahn, Sena
Ahn, Doo-Sik
Choi, Jungkweon
Baik, Mu-Hyun
Ihee, Hyotcherl
Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography
title Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography
title_full Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography
title_fullStr Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography
title_full_unstemmed Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography
title_short Gold Nanoparticle Formation via X-ray Radiolysis Investigated with Time-Resolved X-ray Liquidography
title_sort gold nanoparticle formation via x-ray radiolysis investigated with time-resolved x-ray liquidography
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582564/
https://www.ncbi.nlm.nih.gov/pubmed/32992497
http://dx.doi.org/10.3390/ijms21197125
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