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Environmental aspects of controlled radical polymerization

机译:受控自由基聚合的环境方面

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Controlled radical polymerization is an important recent development in polymer synthesis with a potential strong impact on various environmental aspects. This technique enables facile preparation of novel environmentally friendly materials such as polar thermoplastic elastomers, coatings with the reduced amount of VOCs or even solventless coatings and several other specialty materials such as efficient non-ionic surfactants, dispersants, lubricants, adhesives, etc. The controlled radical polymerizations have been successfully performed in bulk or in water and require only a modest deoxygenation of the reaction mixtures. These polymerizations have been applied to homogeneous systems and also to emulsions, dispersions and suspensions. Atom transfer radical polymerization is one of the most efficient methods to control radical polymerization in the presence of various transition metal complexes. Development of new more efficient catalytic systems enables reduction of the amount of catalysts and their recycling. Use of ligands which better stabilize higher oxidation state metal compounds, such as linear and branched aliphatic polyamines, allowed a significant reduction of the catalyst concentration in comparison with the originally used bipyridine complexes. Immobilization of catalysts enables their efficient reclamation but is accompanied by the formation of polymers with higher polydispersities than in the homogeneous systems. [References: 44]
机译:受控的自由基聚合是聚合物合成领域的一项重要的近期进展,对环境的各个方面都有潜在的强烈影响。该技术可以轻松地制备新型环保材料,例如极性热塑性弹性体,VOC量减少的涂料,甚至是无溶剂涂料,以及其他几种特殊材料,例如有效的非离子表面活性剂,分散剂,润滑剂,粘合剂等。自由基聚合已在本体或水中成功进行,仅需要对反应混合物进行适度的脱氧。这些聚合反应已应用于均相体系,也应用于乳液,分散体和悬浮液。原子转移自由基聚合是在各种过渡金属络合物存在下控制自由基聚合的最有效方法之一。新的更有效的催化系统的开发能够减少催化剂的数量及其再循环。与最初使用的联吡啶配合物相比,使用能更好地稳定高氧化态金属化合物的配体,例如直链和支链脂族多胺,可使催化剂浓度大大降低。催化剂的固定化使其能够有效地回收,但同时形成的聚合物比均相体系具有更高的多分散性。 [参考:44]

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