The impact of intramolecular polydispersity on the self-assembly of AB miktoarm star copolymers.

Phys Chem Chem Phys

State Key Laboratory of Molecular Engineering of Polymers, Key Laboratory of Computational Physical Sciences, Department of Macromolecular Science, Fudan University, Shanghai 200433, China.

Published: July 2023

The self-assembly behaviors of AB miktoarm star copolymers as one typical type of asymmetric architecture have been studied well in the past few decades due to their deflected phase boundaries. In particular, recently, they have attracted renewed theoretical interest due to their expanded spherical phase region that stabilizes complex Frank-Kasper spherical phases. However, previous theoretical studies have never considered AB copolymers with unequal arm lengths, which is more or less the case for synthesized copolymers. In this work, we investigate the self-assembly behaviors of AB miktoarm star copolymers with unequal B-arms using self-consistent field theory. We propose an intramolecular polydispersity index () to quantify the distribution of unequal B-blocks. Accordingly, we further propose a simple quantity of an effective arm number = / for quantitatively comparing the phase boundaries between various AB copolymer samples with different arm numbers or different distributions of B-blocks. Our results indicate that different AB copolymers with equal exhibit similar phase diagrams. On the other hand, we also found that the phase boundaries of two different samples with same are not exactly overlapped. We speculate that the effect of spontaneous curvature may be mainly controlled by , but the packing frustration of B-blocks may also be dependent on the other quantities that are closely related to the shape of the distribution of B-arms, such as higher order polydispersity indexes.

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Source
http://dx.doi.org/10.1039/d3cp00994gDOI Listing

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