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  5. Fouling Release Nanostructured Coatings based on PDMS-polyurea Segmented Copolymers

Fouling Release Nanostructured Coatings based on PDMS-polyurea Segmented Copolymers

File(s)
2010-04 Publication - Emmanuel Giannelis - Fouling Release Nanostructured Coatings.pdf (797.37 KB)
Main article
Permanent Link(s)
https://hdl.handle.net/1813/17822
Collections
Energy and Sustainability Publications
Author
Fang, J.
Kelarakis, A.
Wang, D.
Giannelis, E.P.
Abstract

The bulk and surface characteristics of a series of coatings based on PDMS-polyurea segmented copolymers were correlated to their fouling release performance. Incorporation of polyurea segments to PDMS backbone gives rise to phase separation with the extensively hydrogen bonded hard domains creating an interconnected network that imparts mechanical rigidity. Increasing the compositional complexity of the system by including fluorinated or POSS-functionalized chain extenders or through nanoclay intercalation, confers further thermomechanical improvements. In analogy to the bulk morphology, the surface toporgraphy also reflects the compositional complexity of the materials, displaying a wide range of motifs. Investigations on settlement and subsequent removal of Ulva sporelings on those nanostructured surfaces indicate that the work required to remove the microorganisms is significantly lower compared to coatings based on standard PDMS homopolymer. All in all, the series of materials considered in this study demonstrate advanced fouling release properties, while exhibiting superior mechanical properties and thus, long term durability. (C) 2010 Elsevier Ltd. All rights reserved.

Description
http://www.elsevier.com/wps/find/journaldescription.cws_home/30466/description#description
Sponsorship
This publication is based on work supported by the Office of Naval Research. This publication is also based on work supported in part by Award No. KUS-C1-018-02, made by King Abdullah University of Science and Technology (KAUST). We acknowledge facility support through the Cornell Center for Materials Research (CCMR) and the Nanobiotechnology Center (NBTC).
Date Issued
2010-05-28
Publisher
ELSEVIER SCI LTD
Keywords
Nanostructuring
•
Fouling release
•
Surface topology
Previously Published as
Polymer, 51 (12), 2636-2642, May 28, 2010
ISSN
0032-3861
Type
article

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