## Abstract The morphologies of triblock copolymer/homopolymer blend films confined between two neutral hard walls were studied via MC simulations on a simple cubic lattice. For ABA/A and ABA/B blend films, the effects of __ฯ__~h~ (the volume fraction of the homopolymer) and __M__~h~/__M__~b~ (the
Morphologies of Diblock Copolymer/Homopolymer Blend Films
โ Scribed by Yongmin Huang; Honglai Liu; Ying Hu
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 392 KB
- Volume
- 15
- Category
- Article
- ISSN
- 1022-1344
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โฆ Synopsis
Abstract
Summary: Using bond length fluctuation and cavity diffusion algorithm, the morphologies of diblock copolymer/homopolymer blend films, AB/C and AB/A, confined between two hard walls are studied via Monte Carlo (MC) simulation on a cubic lattice. For the AB/C film, the C homopolymer is supposed to be more compatible with the A block than with the B block, while A and B are mutually incompatible. Effects of the composition of the diblock copolymer/homopolymer mixture, the symmetry of the diblock copolymer chain, the film thickness and the selective wall field on morphologies are studied in detail. Furthermore, the simulated results are compared with that of corresponding ABA and ABC triblock copolymer thin films. Comparisons with experiments and SCF theory also show good agreement. The results indicate that both the AB/C and AB/A can be used to prepare porous AB diblock copolymer membranes, the size of the pore channel can be controlled by the volume fraction of homopolymer C or homopolymer A.
Morphology of A~6~B~14~/C~10~ polymer blend film.
magnified imageMorphology of A~6~B~14~/C~10~ polymer blend film.
๐ SIMILAR VOLUMES
## Abstract The morphology of blockโcopolymer, ionโconductive, electrolyte thin films is studied. Based on PSโbโPEO and the alkali salt Li[N(CF~3~SO~2~)~2~], hybrid structures are probed as a function of Li/PEO ratio. Using optical microscopy, AFM and grazing incidence SAXS, films of 50โnm thicknes
## Abstract **Summary:** Coexisting bicontinuous morphologies, one ordered and one disordered, are investigated in a macrophaseโseparated poly(styreneโ__block__โisoprene) diblock copolymer/homopolystyrene (SI/hS) blend. Twoโphase behavior is attributed to the relatively high hS/S mass ratio (0.92).