Journal article
Autophobicity-driven surface segregation and patterning of core-shell microgel nanoparticles
B Wei, PA Gurr, AO Gozen, A Blencowe, DH Solomon, GG Qiao, RJ Spontak, J Genzer
Nano Letters | AMER CHEMICAL SOC | Published : 2008
DOI: 10.1021/nl802109x
Abstract
Core-shell microgel (CSMG) nanoparticles, also referred to as core-cross-linked star (CCS) polymers, can be envisaged as permanently cross-linked block copolymer micelles and, as such, afford novel opportunities for chemical functionalization, templating, and encapsulation. In this study, we explore the behavior of CSMG nanoparticles comprising a poly(methyl methacrylate) (PMMA) shell in molten PMMA thin films. Because of the autophobicity between the densely packed, short PMMA arms of the CSMG shell and the long PMMA chains in the matrix, the nanoparticles migrate to the film surface. They cannot, however, break through the surface because of the inherently high surface energy of PMMA. Simi..
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Funding Acknowledgements
This work was supported by the Kenan Institute for Engineering, Technology and Science at North Carolina State University and a Linkage-International project sponsored by the Australian Research Council (G.G.Q. and R.J.S.). We thank Dr. K. Efimenko for providing the PDMS stamp.