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◆ Materials horizons2026-09-18

Semicrystalline chain-growth photopolymer networks synthesized by orthogonal neat polymerization reactions.

Selma Kadic, Nate D Gangelhoff, Grant M Musgrave, Paul Cardon, Huiwen Ji, Chen Wang

原始摘要(英文原文)· Original abstract
A sequential and orthogonal polymerization reaction strategy was developed to synthesize semicrystalline polymer networks. Acrylate-terminated oligomers were first prepared by thiol-Michael oligomerization between difunctional aliphatic acrylate and thiol monomers, giving oligomers with molecular weight ranges of 3.1-12.4 kDa. These crystalline oligomers were then photopolymerized in their molten state at 70 °C. The longer oligomers yielded semicrystalline networks, confirmed by thermal, mechanical, optical, and X-ray diffraction characterizations, whereas shorter-chain analogs were weakly crystalline or amorphous. Mechanical testing suggested strain-induced crystallization behavior, in which samples crystallized under tension reached 680% elongation-at-break and 15 MPa ultimate tensile strength.
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Semicrystalline chain-growth photopolymer networks synthesized by orthogonal neat polymerization reactions. — 科研速览 Science Skim