3D Bulk Ordering in Macroscopic Solid Opaline Films by Edge-Induced Rotational Shearing

Permanent ordering of sub‐micrometer polymeric spheres by edge rotational shearing is reported. The resulting high‐quality, bulk, 3D‐ordered polymer opal thin‐films exhibit strikingly intense, tuneable structural color, which is applicable for photonics, metamaterials, nanoassembly, and structural c...

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Veröffentlicht in:Advanced materials (Weinheim) 2011-04, Vol.23 (13), p.1540-1544
Hauptverfasser: Finlayson, Chris E., Spahn, Peter, Snoswell, David R. E., Yates, Gabrielle, Kontogeorgos, Andreas, Haines, Andrew I., Hellmann, G. Peter, Baumberg, Jeremy J.
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container_end_page 1544
container_issue 13
container_start_page 1540
container_title Advanced materials (Weinheim)
container_volume 23
creator Finlayson, Chris E.
Spahn, Peter
Snoswell, David R. E.
Yates, Gabrielle
Kontogeorgos, Andreas
Haines, Andrew I.
Hellmann, G. Peter
Baumberg, Jeremy J.
description Permanent ordering of sub‐micrometer polymeric spheres by edge rotational shearing is reported. The resulting high‐quality, bulk, 3D‐ordered polymer opal thin‐films exhibit strikingly intense, tuneable structural color, which is applicable for photonics, metamaterials, nanoassembly, and structural color applications
doi_str_mv 10.1002/adma.201003934
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source MEDLINE; Wiley Online Library Journals Frontfile Complete
subjects Color
Microtechnology - methods
opals
Optics and Photonics
photonic crystals
polymers
Polymers - chemistry
Rotation
self-assembly
title 3D Bulk Ordering in Macroscopic Solid Opaline Films by Edge-Induced Rotational Shearing
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