Directed organization of gold nanoparticles in polymer coatings through infrared-assisted evaporative lithography
Directed organization of gold nanoparticles in polymer coatings through infrared-assisted evaporative lithography
Infrared-assisted evaporative lithography (IRAEL) is presented as an emerging technology to direct the assembly of gold nanospheres (AuNSs) into large-scale superstructures within colloidal polymeric coatings. The organization of gold nanoparticle arrays within the superstructures can be tuned over length scales, ranging from micrometers up to several millimetres, giving rise to intrinsic plasmonic properties.
Utgenannt, André
307e12a9-17bf-409f-8d14-f4f0f0d41481
Keddie, Joseph L.
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Muskens, Otto L.
2284101a-f9ef-4d79-8951-a6cda5bfc7f9
Kanaras, Antonios G.
667ecfdc-7647-4bd8-be03-a47bf32504c7
Utgenannt, André
307e12a9-17bf-409f-8d14-f4f0f0d41481
Keddie, Joseph L.
27235923-f259-441c-9452-b9a571042cc8
Muskens, Otto L.
2284101a-f9ef-4d79-8951-a6cda5bfc7f9
Kanaras, Antonios G.
667ecfdc-7647-4bd8-be03-a47bf32504c7
Utgenannt, André, Keddie, Joseph L., Muskens, Otto L. and Kanaras, Antonios G.
(2012)
Directed organization of gold nanoparticles in polymer coatings through infrared-assisted evaporative lithography.
Chemical Communications.
(doi:10.1039/C2CC37844B).
Abstract
Infrared-assisted evaporative lithography (IRAEL) is presented as an emerging technology to direct the assembly of gold nanospheres (AuNSs) into large-scale superstructures within colloidal polymeric coatings. The organization of gold nanoparticle arrays within the superstructures can be tuned over length scales, ranging from micrometers up to several millimetres, giving rise to intrinsic plasmonic properties.
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e-pub ahead of print date: 22 November 2012
Organisations:
Quantum, Light & Matter Group
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Local EPrints ID: 350419
URI: http://eprints.soton.ac.uk/id/eprint/350419
ISSN: 1359-7345
PURE UUID: 7d95393e-2279-437a-bd73-14c027d2fd5f
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Date deposited: 26 Mar 2013 16:04
Last modified: 15 Mar 2024 03:34
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Author:
André Utgenannt
Author:
Joseph L. Keddie
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