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Rapid synthesis of new block copolyurethanes derived from L-leucine cyclodipeptide in reusable molten ammonium salts: novel and efficient green media for the synthesis of new hydrolysable and biodegradable copolyurethanes

机译:在可重复使用的熔融铵盐中快速合成衍生自L-亮氨酸环二肽的新型嵌段共聚氨基甲酸酯:合成新型可水解和可生物降解的共聚氨基甲酸酯的新型高效绿色介质

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摘要

This study concerns the synthesis of novel multi block polyurethane (PU) copolymers containing cyclodipeptide, taking the advantage of ionic liquids (ILs) under microwave irradiation. For this, L-leucine anhydride cyclodipeptide (LACP) was prepared and then a new class of poly(ether-urethane-urea)s (PEUUs) was synthesized in molten ammonium type ILs. ILs were used as reaction media and PUs were prepared via two-step polymerization method. In the first step, 4,4'-methylene-bis-(4-phenyliso-cyanate) (MDI) was reacted with LACP to produce isocyanate-terminated oligo(imide-urea) as hard segment (NCO-OIU). Chain extension of the aforementioned pre-polymer with polyethyleneglycol (PEG) of molecular weights of 1000 (PEG-1000) was the second step to furnish a series of new PEUUs. These multiblock copolymers are thermally stable, soluble in amide-type solvents, hydrolysable and biodegradable. PEUUs prepared in ILs under microwave irradiation showed more phase separation and crystailinity than PEUUs prepared under conventional method. 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, and catalysts. Ammonium type reaction media were air and water stable, and relatively cheap, which makes them suitable for application. The results demonstrate that they can be easily separated into water and reused without losing activity. Reusability of tetrabutylammonium bromide as reaction media makes the method a cost effective and environmentally benign method under microwave irradiation. Thus, we could prepare environmentally friendly polymers via environmentally benign method.
机译:这项研究涉及利用微波辐射下的离子液体(ILs)的优势,合成含有环二肽的新型多嵌段聚氨酯(PU)共聚物。为此,制备了L-亮氨酸酐环二肽(LACP),然后在熔融铵型ILs中合成了一类新型的聚(醚-氨基甲酸酯-脲)(PEUU)。 ILs用作反应介质,并通过两步聚合法制备PU。第一步,使4,4'-亚甲基双-(4-苯基异氰酸酯)(MDI)与LACP反应,生成异氰酸酯封端的低聚物(酰亚胺-脲)作为硬链段(NCO-OIU)。前述预聚物与分子量为1000(PEG-1000)的聚乙二醇(PEG)的扩链是提供一系列新PEUU的第二步。这些多嵌段共聚物是热稳定的,可溶于酰胺型溶剂中,可水解和可生物降解。与常规方法制备的PEUU相比,微波辐照在ILs中制备的PEUU表现出更多的相分离和结晶度。此处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和催化剂。铵型反应介质对空气和水都是稳定的,并且相对便宜,这使其适合于应用。结果表明,它们可以很容易地分离成水并重复使用而不会失去活性。四丁基溴化铵作为反应介质的可重​​复使用性使该方法成为微波辐射下经济高效且对环境无害的方法。因此,我们可以通过环境友好的方法制备环境友好的聚合物。

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