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Catalyst switch strategy enabled a single polymer with five different crystalline phases

Chemistry

Catalyst switch strategy enabled a single polymer with five different crystalline phases

P. Zhang, V. Ladelta, et al.

This groundbreaking research by Pengfei Zhang, Viko Ladelta, Edy Abou-hamad, Alejandro J. Müller, and Nikos Hadjichristidis presents the successful synthesis of a unique pentablock quintopolymer with five distinct crystalline phases, achieved through innovative polymerization techniques and a catalyst switch strategy. Discover how this work could reshape the future of materials science!... show more
Abstract
Well-defined multicrystalline multiblock polymers are essential model polymers for advancing crystallization physics, phase separation, self-assembly, and improving the mechanical properties of materials. However, due to different chain properties and incompatible synthetic methodologies, multicrystalline multiblock polymers with more than two crystallites are rarely reported. Herein, by combining polyhomologation, ring-opening polymerization, and catalyst switch strategy, we synthesized a pentacrystalline pentablock quintopolymer, polyethylene-b-poly(ethylene oxide)-b-poly(ε-caprolactone)-b-poly(L-lactide)-b-polyglycolide (PE-b-PEO-b-PCL-b-PLLA-b-PGA). The fluoroalcohol-assisted catalyst switch enables the successful incorporation of a high melting point polyglycolide block into the complex multiblock structure. Solid-state nuclear magnetic resonance spectroscopy, X-ray diffraction, and differential scanning calorimetry revealed the existence of five different crystalline phases.
Publisher
Nature Communications
Published On
Nov 20, 2023
Authors
Pengfei Zhang, Viko Ladelta, Edy Abou-hamad, Alejandro J. Müller, Nikos Hadjichristidis
Tags
pentablock quintopolymer
polyhomologation
ring-opening polymerization
catalyst switch strategy
solid-state NMR
X-ray diffraction
differential scanning calorimetry
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