Hierarchically structured 2D silver sheets with fractal network

Oriented attachment can be used as a good synthetic route to make highly anisotropic nanostructures including nanorod, nanowire, nanoplate, and nanosheets. In a typical growth of anisotropic nanostructures, coalescence and reshaping after attachment make dense nanostructures. In this report, we show...

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Main Authors: Aasim Shahzad, Suk Ho Bhang, Euiyoung Jung, Woo-Sik Kim, Taekyung Yu
Format: Article
Language:English
Published: Elsevier 2018-06-01
Series:Journal of Materiomics
Online Access:http://www.sciencedirect.com/science/article/pii/S235284781730120X
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author Aasim Shahzad
Suk Ho Bhang
Euiyoung Jung
Woo-Sik Kim
Taekyung Yu
author_facet Aasim Shahzad
Suk Ho Bhang
Euiyoung Jung
Woo-Sik Kim
Taekyung Yu
author_sort Aasim Shahzad
collection DOAJ
description Oriented attachment can be used as a good synthetic route to make highly anisotropic nanostructures including nanorod, nanowire, nanoplate, and nanosheets. In a typical growth of anisotropic nanostructures, coalescence and reshaping after attachment make dense nanostructures. In this report, we show the formation of Ag sheets having fractal network by oriented attachment at low reaction temperature of 30 °C. The synthesized Ag sheets exhibited good crystalline nature despite of their network structure and low synthetic temperature. We also investigated the effect of reaction conditions for the formation of the Ag sheets. In addition, using the Ag sheets as a sacrificial template, we could make hollow Au sheets via galvanic replacement. Keywords: Ag sheets, Fractal network, Oriented attachment, Aqueous-phase, Au sheets, Galvanic replacement
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spelling doaj.art-4b473cd97fb34385b236748ebf74a53f2023-08-02T03:15:26ZengElsevierJournal of Materiomics2352-84782018-06-0142121128Hierarchically structured 2D silver sheets with fractal networkAasim Shahzad0Suk Ho Bhang1Euiyoung Jung2Woo-Sik Kim3Taekyung Yu4Department of Chemical Engineering, College of Engineering, Kyung Hee University, Youngin, 17104, Republic of KoreaSchool of Chemical Engineering, Sungkyunkwan University, Suwon, 16419, Republic of KoreaDepartment of Chemical Engineering, College of Engineering, Kyung Hee University, Youngin, 17104, Republic of KoreaDepartment of Chemical Engineering, College of Engineering, Kyung Hee University, Youngin, 17104, Republic of Korea; Corresponding author.Department of Chemical Engineering, College of Engineering, Kyung Hee University, Youngin, 17104, Republic of Korea; Corresponding author.Oriented attachment can be used as a good synthetic route to make highly anisotropic nanostructures including nanorod, nanowire, nanoplate, and nanosheets. In a typical growth of anisotropic nanostructures, coalescence and reshaping after attachment make dense nanostructures. In this report, we show the formation of Ag sheets having fractal network by oriented attachment at low reaction temperature of 30 °C. The synthesized Ag sheets exhibited good crystalline nature despite of their network structure and low synthetic temperature. We also investigated the effect of reaction conditions for the formation of the Ag sheets. In addition, using the Ag sheets as a sacrificial template, we could make hollow Au sheets via galvanic replacement. Keywords: Ag sheets, Fractal network, Oriented attachment, Aqueous-phase, Au sheets, Galvanic replacementhttp://www.sciencedirect.com/science/article/pii/S235284781730120X
spellingShingle Aasim Shahzad
Suk Ho Bhang
Euiyoung Jung
Woo-Sik Kim
Taekyung Yu
Hierarchically structured 2D silver sheets with fractal network
Journal of Materiomics
title Hierarchically structured 2D silver sheets with fractal network
title_full Hierarchically structured 2D silver sheets with fractal network
title_fullStr Hierarchically structured 2D silver sheets with fractal network
title_full_unstemmed Hierarchically structured 2D silver sheets with fractal network
title_short Hierarchically structured 2D silver sheets with fractal network
title_sort hierarchically structured 2d silver sheets with fractal network
url http://www.sciencedirect.com/science/article/pii/S235284781730120X
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