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Internal phase separation drives dewetting in polymer blend and nanocomposite films

Author
CHUNG, Hyun-Joong1 2 ; OHNO, Kohji; FUKUDA, Takeshi; COMPOSTO, Russell J1
[1] Materials Science and Engineering and Laboratory for Research on the Structure of Matter, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6272, United States
[2] Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan
Source

Macromolecules. 2007, Vol 40, Num 2, pp 384-388, 5 p ; ref : 31 ref

CODEN
MAMOBX
ISSN
0024-9297
Scientific domain
Polymers, paint and wood industries
Publisher
American Chemical Society, Washington, DC
Publication country
United States
Document type
Article
Language
English
Keyword (fr)
Caractéristique temporelle Cinétique Démouillage Etude expérimentale Film Microrugosité Modélisation Mélange polymère Méthacrylate de méthyle polymère Nanocomposite Nanoparticule SAN Silice Séparation phase
Keyword (en)
Time curve Kinetics Dewetting Experimental study Film Microroughness Modeling Polymer blends Methyl methacrylate polymer Nanocomposite Nanoparticle SAN Silica Phase separation
Keyword (es)
Característica temporal Cinética Estudio experimental Película Microrugosidad Modelización Metacrilato de metilo polímero Nanocompuesto Nanopartícula SAN Sílice Separación fase
Classification
Pascal
001 Exact sciences and technology / 001D Applied sciences / 001D10 Polymer industry, paints, wood / 001D10A Technology of polymers / 001D10A06 Forms of application and semi-finished materials / 001D10A06H Composites

Discipline
Polymer industry, paints, wood
Origin
Inist-CNRS
Database
PASCAL
INIST identifier
18468564

Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS

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