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Updated: Jan 15, 2026

Self-assembling Morphologies Obtained from Helical Polycarbodiimide Copolymers and Their Triazole Derivatives
Published on: February 7, 2017
Microphase Separation and Thermal Properties for High-χ Ionic Homopolymers: Effect of Side-Chain Dipole Orientation
Sen Weng1,2, Rui Zhao2, Xin Fu1
1College of Chemical Engineering, Fuzhou University, Fuzhou 350108, China.
Abstract:
The heterogeneity of the microstructure for polymer materials determines the differential performance of their macroscopic properties. In this work, para-ionic homopolymers (P4VBCn-(i)imi) and meta-ionic homopolymers (P3VBCn-(i)imi) were prepared by reacting poly(4-vinylbenzyl chloride) and poly(3-vinylbenzyl chloride) with long-chain alkyl imidazole, respectively. Microphase separation was achieved through the dominance of long-chain crystallization, resulting in lamellar nanopatterns below 5 nm. The thermal properties of para-ionic homopolymers were higher than those of meta-ionic homopolymers in terms of polymer bulk and microphase separation structure, reflecting a significant dependence of thermal properties on the dipole orientation of the side chains. For the first time, the calculation of the Flory-Huggins parameter (χ) was introduced into the homopolymer systems, providing a simple and efficient method for investigating the effects of the side-chain dipole orientation and ionization on ionic homopolymers. Calculation results showed that the side-chain dipole orientation differentiates χ values for ionic homopolymers. These findings provided a novel research strategy for the correlation between the microstructure and macroscopic properties of homopolymer materials and offered new ideas for the design and manufacture of homopolymer patterned materials.
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