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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Facilely Recyclable Cu(II) Macrocomplex with Thermoregulated Poly(ionic liquid) Macroligand: Serving as a Highly Efficient Atom Transfer Radical Polymerization Catalyst
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Facilely Recyclable Cu(II) Macrocomplex with Thermoregulated Poly(ionic liquid) Macroligand: Serving as a Highly Efficient Atom Transfer Radical Polymerization Catalyst

机译:具有温度调节型聚离子大分子配体的可轻松回收的Cu(II)大分子络合物:用作高效的原子转移自由基聚合催化剂

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摘要

Copolymer poly(ionic liquids) (PILs) are fascinating new polymerized polyelectrolytes that can provide the properties of ionic liquids with others combined into one. In this work, a thermoregulated random copolymer PIL (PILL) with the side chains of both ionic liquids and atom transfer radical polymerization (ATRP) ligands was designed and synthesized to form a macrocomplex with CuBr2 and serve as an ATRP catalyst to establish a thermoregulated phase separated catalysis (TPSC) system and further applied in a typical ICAR (initiators for continuous activator regeneration) ATRP process for the catalyst separation and recycling in situ for the first time. This novel TPSC system could simultaneously recycle transition metal catalyst and ligand easily just by changing temperature from polymerization temperature to room temperature. Additionally, even if the highly efficient recyclable PILL with Cu catalyst was separated facilely and reused 10 times in situ, it nearly did not sacrifice the controllability over polymerization. Furthermore, after polymerization and a TPSC process, the metal catalyst residual in the polymer solution phase remained just about 1.5 ppm, indicating highly efficient transition metal catalyst recycling efficiency.
机译:共聚物聚(离子液体)(PIL)令人着迷,它可以提供与其他离子液体组合在一起的新型离子液体特性。在这项工作中,设计并合成了具有离子液体和原子转移自由基聚合(ATRP)配体的侧链的温度调节无规共聚物PIL(PILL),以与CuBr2形成大分子络合物,并用作ATRP催化剂以建立温度调节相分离催化(TPSC)系统,并进一步应用于典型的ICAR(用于连续活化剂再生的引发剂)ATRP工艺中,首次将催化剂分离和回收。仅通过将温度从聚合温度改变为室温,该新颖的TPSC系统就可以容易地同时回收过渡金属催化剂和配体。另外,即使将具有Cu催化剂的高效可循环利用的PILL容易地分离并原位重复使用10次,它几乎也不会牺牲聚合的可控制性。此外,在聚合和TPSC工艺之后,残留在聚合物溶液相中的金属催化剂仅保持约1.5ppm,表明高效的过渡金属催化剂再循环效率。

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