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Relaxing the vacuum

Relaxing the vacuum MaTeRial wiTness news & views and making them accessible for catalysis critical stretching degree required for the Eugenia Kharlampieva and Vladimir V. Tsukruk are (Fig. 1b,c). The hydrolysis reaction can be biocatalytic activation was found to be 70%, at the School of Materials Science and Engineering, followed by the emerging fluorescence of the a significant level of deformation. Georgia Institute of Technology, Atlanta, hydrolysed FDP. e w Th ork of Voegel and co-workers Georgia 30332, USA. e p Th rocess of masking and unmasking shows that the design of ‘cryptic-like’ e‑mail: vladimir@mse.gatech.ed u the enzymes is reversible, and thus surfaces capable of reversibly inducing References bioactivation can be turned on or off biochemical reactions by applying a 1. Luzinov, I., Minko, S. & Tsukruk, V. V. Prog. Polym. Sci. on demand by applying more or less mechanical stress is feasible with layer-by- 29, 635–698 (2004). mechanical strain. When the film is no layer materials. Manipulating the construct 2. Mertz, D. et al. Nature Mater. 8, 731–735 (2009). 3. Decher, G. & Schleno, J ff . B. (eds) Multilayer i Th n Films: Sequential longer stretched, the enzymes are again design, for example, by varying the barrier Assembly of Nanocomposite http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Nature Materials Springer Journals

Relaxing the vacuum

Nature Materials , Volume 8 (9) – Sep 1, 2009

Relaxing the vacuum

Abstract

MaTeRial wiTness news & views and making them accessible for catalysis critical stretching degree required for the Eugenia Kharlampieva and Vladimir V. Tsukruk are (Fig. 1b,c). The hydrolysis reaction can be biocatalytic activation was found to be 70%, at the School of Materials Science and Engineering, followed by the emerging fluorescence of the a significant level of deformation. Georgia Institute of Technology, Atlanta, hydrolysed FDP. e w Th ork of Voegel and co-workers Georgia...
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References (3)

Publisher
Springer Journals
Copyright
Copyright © 2009 by Nature Publishing Group
Subject
Materials Science; Materials Science, general; Optical and Electronic Materials; Biomaterials; Nanotechnology; Condensed Matter Physics
ISSN
1476-1122
eISSN
1476-4660
DOI
10.1038/nmat2516
Publisher site
See Article on Publisher Site

Abstract

MaTeRial wiTness news & views and making them accessible for catalysis critical stretching degree required for the Eugenia Kharlampieva and Vladimir V. Tsukruk are (Fig. 1b,c). The hydrolysis reaction can be biocatalytic activation was found to be 70%, at the School of Materials Science and Engineering, followed by the emerging fluorescence of the a significant level of deformation. Georgia Institute of Technology, Atlanta, hydrolysed FDP. e w Th ork of Voegel and co-workers Georgia 30332, USA. e p Th rocess of masking and unmasking shows that the design of ‘cryptic-like’ e‑mail: vladimir@mse.gatech.ed u the enzymes is reversible, and thus surfaces capable of reversibly inducing References bioactivation can be turned on or off biochemical reactions by applying a 1. Luzinov, I., Minko, S. & Tsukruk, V. V. Prog. Polym. Sci. on demand by applying more or less mechanical stress is feasible with layer-by- 29, 635–698 (2004). mechanical strain. When the film is no layer materials. Manipulating the construct 2. Mertz, D. et al. Nature Mater. 8, 731–735 (2009). 3. Decher, G. & Schleno, J ff . B. (eds) Multilayer i Th n Films: Sequential longer stretched, the enzymes are again design, for example, by varying the barrier Assembly of Nanocomposite

Journal

Nature MaterialsSpringer Journals

Published: Sep 1, 2009

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