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Morphology and Conformation Analysis of Self-Assembled Triblock Copolymer Melts

✍ Scribed by Basel Abu-Sharkh; Abdullah AlSunaidi


Book ID
102495183
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
340 KB
Volume
15
Category
Article
ISSN
1022-1344

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✦ Synopsis


Abstract

Summary: We used the dissipative particle dynamics method to simulate the self‐assembly of symmetric triblock copolymers of the type ABA. Depending on the volume fraction of the end blocks f~A~, several mesophases including lamellar, perforated lamellar, gyroid, hexagonal cylinders and bcc spherical micelles were obtained. The order‐disorder transition (ODT) at f~A~ = 0.5 was found to be about Ο‡____N = 19.8. The ODT for the cylindrical mesophase at symmetrical points on the phase diagram had different values, indicating asymmetry in the phase diagram. We were also able to estimate the bridge fraction in the different mesophases. They range from about 0.44 for the lamellar mesophase to about 0.75 for the spherical micelles. Our simulation results are in good agreement with previously reported theoretical calculations and experimental observations.

The hexagonal cylinders generated with the A~6~B~4~A~6~ copolymer.

magnified imageThe hexagonal cylinders generated with the A~6~B~4~A~6~ copolymer.


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## Abstract Summary: The morphologies and conformations of triblock copolymer (ABA and ABC) thin films confined between two identical walls were investigated by Monte Carlo simulation using bond length fluctuation and cavity diffusion algorithm on cubic lattice. Effects of the wall‐block interactio