Communication: Lateral phase separation of mixed polymer brushes physisorbed on planar substrates
Here, we present a new method to model lateral phase separation in mixed polymer brushes physisorbed to a planar surface with mobile grafting points. The model is based on a local mean field theory that combines a Flory-Huggins approximation for interaction enthalpies with an Alexander-de Gennes bru...
Príomhchruthaitheoirí: | , |
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Rannpháirtithe: | |
Formáid: | Alt |
Teanga: | en_US |
Foilsithe / Cruthaithe: |
American Institute of Physics
2013
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Rochtain ar líne: | http://hdl.handle.net/1721.1/79417 https://orcid.org/0000-0001-5554-1283 |
Achoimre: | Here, we present a new method to model lateral phase separation in mixed polymer brushes physisorbed to a planar surface with mobile grafting points. The model is based on a local mean field theory that combines a Flory-Huggins approximation for interaction enthalpies with an Alexander-de Gennes brush entropy contribution. Using Monte Carlo sampling, the application of these two interactions to a lattice model yields a range of phase behavior consistent with previous theoretical and experimental work. This model will be useful for predicting mixed polymer brush morphologies on planar surfaces and in principle can be extended to other geometries (e.g., spheres) and polymer systems. |
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