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エポキシドとイソシアネートの配列選択共ポリメリゼーションによるポリウレタンとポリアロファネート
Mark Jurrat1,2, Benjamin J Pointer-Gleadhill1,2, Liam T Ball1,2
1GSK Carbon Neutral Laboratories for Sustainable Chemistry, University of Nottingham, Triumph Road, Nottingham NG7 2TU, U.K.
Journal of the American Chemical Society
|April 21, 2020
まとめ
この研究では,環開き共ポリメリゼーションのためのアリルイソシアネートを導入し,新しいポリウレタンとポリアロファネートを生成します. この突破はポリマー化学を拡張し 独特の材料構造へのアクセスを可能にします
科学分野:
- ポリマー化学
- 有機合成
- 材料科学
背景:
- リング開封共ポリメリゼーション (ROCOP) は,多用途のポリメリゼーション技術である.
- イソシアネートをエポキシドでROCOPに組み込むことは,合成的な課題を提示します.
- 既存の方法はポリマーの微細構造に対する制御が限られている.
研究 の 目的:
- アリルイソシアネートをコモノマーとして,エポキシドでROCOPに導入する.
- 単一の触媒を使用して,異なるコポリマータイプのための異なった配列選択性を達成する.
- 独自の微細構造を持つ新しいポリウレタン (PU) とポリアロファナート (PA) を開発する.
主な方法:
- 単一の二酸化マグネシウム触媒をROCOPに使用した.
- 配列の選択性を制御するために反応運動を調査した.
- アリルイソシアネートとエポキシドをコモノマーとして使用している.
主要な成果:
- AB型とABB型共ポリマーの選択的合成を達成した.
- 完全に置換された三次カルバミル窒素原子を持つ新種のポリウレタンを開発した.
- 前例のない骨格構造を持つ ポリアロファナートの新種を生み出しました
結論:
- アリルイソシアネートは,エポキシドとROCOPのコモノマーとして効果的に使用できます.
- この方法論は,ROCOPの範囲を拡大し,多様なポリマー材料への新しい経路を提供します.
- この研究は,特権的なPUマイクロ構造と未開発のPAマイクロ構造へのアクセスを提供します.
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