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論文

Synthesis of heat-resistant living polymer particles by one-step reversible addition-fragmentation chain transfer precipitation polymerization of styrene and $$N$$-phenylmaleimide

山崎 駿*; 金子 直矢*; 加藤 敦也*; 渡邉 航平*; 青木 大輔*; 谷口 竜王*; 唐津 孝*; 上田 祐生; 元川 竜平; 大倉 滉生*; et al.

Polymer, 298, p.126846_1 - 126846_11, 2024/04

 被引用回数:3 パーセンタイル:74.33(Polymer Science)

Synthesis of heat-resistant, living polymer particles via one-step reversible addition-fragmentation chain transfer precipitation polymerization (RAFTPP) of styrene and $$N$$-phenylmaleimide is reported. Gel permeation chromatography and nuclear magnetic resonance spectroscopy confirmed that the polymerization proceeded in a living manner. The scanning electron microscopy results showed that the monodisperse P(St-PhMI) RAFTPP particles with a diameter of 1.88 micrometer were successfully synthesized. The P(St-PhMI) RAFTPP showed excellent thermal stability with a high glass transition temperature and a 5 percent weight loss temperature. The surface concentration of the RAFT groups was determined to be 0.181 groups/square-nanometer due to fragmentation of the RAFT groups exposed on the particles. The small-angle neutron scattering measurements showed the particle formation mechanism, in which the swollen, growing polymer chains were consumed for particle formation. The introduction of grafted chains by surface-initiated RAFT polymerization demonstrated the possibility of further functionalization of P(St-PhMI) RAFTPP particles by exploiting their living nature.

論文

Polymer photonic crystals prepared by triblock copolymerization-induced ${it in situ}$ microphase separation

磯崎 祐嘉*; 東原口 誠也*; 金子 直矢*; 山崎 駿*; 谷口 竜王*; 唐津 孝*; 上田 祐生; 元川 竜平

Chemistry Letters, 51(6), p.625 - 628, 2022/06

 被引用回数:4 パーセンタイル:30.07(Chemistry, Multidisciplinary)

Polymer photonic crystals (PPCs) that selectively reflect visible light were prepared by triblock polymerization-induced ${it in situ}$ microphase separation via reversible addition-fragmentation chain transfer polymerization. The addition of homopolymer to the polymerization system swelled a specific phase of the microdomains, enabling the preparation of PPCs with long-wavelength structural colors. Small-angle neutron scattering confirmed the increase in the domain spacing of the lamellar microdomains with the addition of homopolymer, while maintaining their morphology.

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