首页> 外文期刊>Macromolecular Research >Fast and Eco-Friendly Synthesis of New Hydrolysable and BiodegradableCopolyurethanes Derived from L-Leucine Cyclodipeptide and DifferentMolecular Weights of PEG in TBAB under Microwave Irradiation
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Fast and Eco-Friendly Synthesis of New Hydrolysable and BiodegradableCopolyurethanes Derived from L-Leucine Cyclodipeptide and DifferentMolecular Weights of PEG in TBAB under Microwave Irradiation

机译:微波辐照下TBAB中L-亮氨酸环二肽和不同分子量的PEG衍生的新型可水解和可生物降解的共聚聚氨酯的快速环保合成

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摘要

In this study novel multi block polyurethane (PU) copolymers containing cyclodipeptide were synthesized under microwave irradiation using a quaternary ammonium salt (QAS) as reaction media. For this, L-leucine cyclodipeptide (LC) was prepared and then a new class of poly(ether-urethane-urea)s (PEUUs) was synthesized in tetrabutylammonium bromide (TBAB) via two-step polymerization method. In the first step, 4,4'-methylehe-bis-(4-phenylisocyanate) (MDI) was reacted with LC to produce isocyanate-terminated oligo(imide-urea) as hard segment. The reaction of the aforementioned pre-polymer with poly(ethylene glycols) (PEG) with different molecular weights (PEG400, 600,1000, and 2000) was the second step to furnish a series of new PEUUs. These PEUUs are thermally stable, soluble in amide-type solvents, hydrolysable, and biodegradable. The resulting PEUUs have inherent viscosities in the range of 0.37-0.67 dL/g. The effects of polymerization method and soft segment length on some of the polymers' properties and their structural characteristics were compared. The protocol presented here has the merits of environmentally benign, simple operation, convenient work-up, short reaction time and good yields without using volatile organic solvents or catalysts. Ammonium type reaction medium was air and water stable, and relatively cheap, which makes it suitable for applications. The results demonstrate that it can be easily separated and reused without losing activity which makes the method cost effective and eco-benign.
机译:在这项研究中,使用季铵盐(QAS)作为反应介质,在微波辐射下合成了含有环二肽的新型多嵌段聚氨酯(PU)共聚物。为此,制备了L-亮氨酸环二肽(LC),然后通过两步聚合方法在溴化四丁铵(TBAB)中合成了一类新的聚醚-氨基甲酸酯-脲(PEUU)。在第一步中,使4,4'-甲基ehe-双-(4-苯基异氰酸酯)(MDI)与LC反应,以生成异氰酸酯封端的低聚物(酰亚胺-脲)作为硬链段。前述预聚物与具有不同分子量(PEG400、600、1000和2000)的聚乙二醇(PEG)的反应是提供一系列新PEUU的第二步。这些PEUU具有热稳定性,可溶于酰胺型溶剂,可水解且可生物降解。所得的PEUU具有在0.37-0.67dL / g范围内的固有粘度。比较了聚合方法和软链段长度对某些聚合物性能及其结构特征的影响。这里介绍的方案具有环境友好,操作简单,后处理方便,反应时间短,产率高等优点,而无需使用挥发性有机溶剂或催化剂。铵型反应介质是空气和水稳定的,并且相对便宜,这使其适合于应用。结果表明,该方法可以很容易地分离和重复使用而不会损失活性,从而使该方法具有成本效益和生态效益。

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