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Sam Coveney - Fundamentals of Phase Separation in Polymer Blend Thin Films - 9783319193984 - V9783319193984
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Fundamentals of Phase Separation in Polymer Blend Thin Films

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Description for Fundamentals of Phase Separation in Polymer Blend Thin Films Hardback. Series: Springer Theses. Num Pages: 187 pages, 49 black & white illustrations, 11 colour illustrations, biography. BIC Classification: PHFC; PHH; TGM. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 13. Weight in Grams: 450.
This work sheds new light on fundamental aspects of phase separation in polymer-blend thin films. A key feature underlying the theoretical models is the unification of one-dimensional thermodynamic phase equilibria with film evolution phenomena in two- and three dimensions. Initially, an established 'phase portrait' method, useful for visualising and calculating phase equilibria of polymer-blend films, is generalised to systems without convenient simplifying symmetries. Thermodynamic equilibria alone are then used to explain a film roughening mechanism in which laterally coexisting phases can have different depths in order to minimise free energy. The phase portraits are then utilised to demonstrate that simulations ... Read more

Product Details

Format
Hardback
Publication date
2015
Publisher
Springer International Publishing AG Switzerland
Number of pages
187
Condition
New
Series
Springer Theses
Number of Pages
171
Place of Publication
Cham, Switzerland
ISBN
9783319193984
SKU
V9783319193984
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15

About Sam Coveney
This work sheds new light on fundamental aspects of phase separation in polymer-blend thin films. A key feature underlying the theoretical models is the unification of one-dimensional thermodynamic phase equilibria with film evolution phenomena in two- and three dimensions. Initially, an established 'phase portrait' method, useful for visualising and calculating phase equilibria of polymer-blend films, is generalised to systems without convenient simplifying symmetries. Thermodynamic equilibria alone are ... Read more

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