Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power

Gold nanostructures have shape-dependent properties, making synthetic control over their morphology critical. Here, the authors use dynamic compression to obtain a variety of gold nanoarchitectures, which are formed at very fast timescales by the controlled coalescence of spherical particle arrays.

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Autores principales: Binsong Li, Kaifu Bian, J. Matthew D. Lane, K. Michael Salerno, Gary S. Grest, Tommy Ao, Randy Hickman, Jack Wise, Zhongwu Wang, Hongyou Fan
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/7bb6bbe4bd5f41d1925b015e010904c9
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spelling oai:doaj.org-article:7bb6bbe4bd5f41d1925b015e010904c92021-12-02T15:38:33ZSuperfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power10.1038/ncomms147782041-1723https://doaj.org/article/7bb6bbe4bd5f41d1925b015e010904c92017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14778https://doaj.org/toc/2041-1723Gold nanostructures have shape-dependent properties, making synthetic control over their morphology critical. Here, the authors use dynamic compression to obtain a variety of gold nanoarchitectures, which are formed at very fast timescales by the controlled coalescence of spherical particle arrays.Binsong LiKaifu BianJ. Matthew D. LaneK. Michael SalernoGary S. GrestTommy AoRandy HickmanJack WiseZhongwu WangHongyou FanNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Binsong Li
Kaifu Bian
J. Matthew D. Lane
K. Michael Salerno
Gary S. Grest
Tommy Ao
Randy Hickman
Jack Wise
Zhongwu Wang
Hongyou Fan
Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
description Gold nanostructures have shape-dependent properties, making synthetic control over their morphology critical. Here, the authors use dynamic compression to obtain a variety of gold nanoarchitectures, which are formed at very fast timescales by the controlled coalescence of spherical particle arrays.
format article
author Binsong Li
Kaifu Bian
J. Matthew D. Lane
K. Michael Salerno
Gary S. Grest
Tommy Ao
Randy Hickman
Jack Wise
Zhongwu Wang
Hongyou Fan
author_facet Binsong Li
Kaifu Bian
J. Matthew D. Lane
K. Michael Salerno
Gary S. Grest
Tommy Ao
Randy Hickman
Jack Wise
Zhongwu Wang
Hongyou Fan
author_sort Binsong Li
title Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
title_short Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
title_full Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
title_fullStr Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
title_full_unstemmed Superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
title_sort superfast assembly and synthesis of gold nanostructures using nanosecond low-temperature compression via magnetic pulsed power
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/7bb6bbe4bd5f41d1925b015e010904c9
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AT kmichaelsalerno superfastassemblyandsynthesisofgoldnanostructuresusingnanosecondlowtemperaturecompressionviamagneticpulsedpower
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AT hongyoufan superfastassemblyandsynthesisofgoldnanostructuresusingnanosecondlowtemperaturecompressionviamagneticpulsedpower
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