Document Detail


Nanostructured gold architectures formed through high pressure-driven sintering of spherical nanoparticle arrays.
MedLine Citation:
PMID:  20804208     Owner:  NLM     Status:  MEDLINE    
Abstract/OtherAbstract:
We have demonstrated pressure-directed assembly for preparation of a new class of chemically and mechanically stable gold nanostructures through high pressure-driven sintering of nanoparticle assemblies at room temperature. We show that under a hydrostatic pressure field, the unit cell dimension of a 3D ordered nanoparticle array can be reversibly manipulated allowing fine-tuning of the interparticle separation distance. In addition, 3D nanostructured gold architecture can be formed through high pressure-induced nanoparticle sintering. This work opens a new pathway for engineering and fabrication of different metal nanostructured architectures.
Authors:
Huimeng Wu; Feng Bai; Zaicheng Sun; Raid E Haddad; Daniel M Boye; Zhongwu Wang; Jian Yu Huang; Hongyou Fan
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Publication Detail:
Type:  Journal Article; Research Support, N.I.H., Extramural; Research Support, U.S. Gov't, Non-P.H.S.    
Journal Detail:
Title:  Journal of the American Chemical Society     Volume:  132     ISSN:  1520-5126     ISO Abbreviation:  J. Am. Chem. Soc.     Publication Date:  2010 Sep 
Date Detail:
Created Date:  2010-09-15     Completed Date:  2011-01-04     Revised Date:  -    
Medline Journal Info:
Nlm Unique ID:  7503056     Medline TA:  J Am Chem Soc     Country:  United States    
Other Details:
Languages:  eng     Pagination:  12826-8     Citation Subset:  IM    
Affiliation:
Sandia National Laboratories, 1001 University Boulevard SE, Albuquerque, New Mexico 87106, USA.
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MeSH Terms
Descriptor/Qualifier:
Gold / chemistry*
Metal Nanoparticles / chemistry*
Models, Molecular
Molecular Conformation
Nanoparticles / chemistry*
Nanotechnology / instrumentation*,  methods
Pressure*
Temperature
Chemical
Reg. No./Substance:
7440-57-5/Gold

From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine


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