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Biodegradable materials by reactive extrusion:from catalyzed polymerization to fimctionalization and blend compatibilization

机译:反应性挤出可生物降解的材料:从催化聚合到功能化和共混增容

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This contribution aims at reviewing how reactive extrusion (REx) technique can participate in the design and development of biodegradable polymeric materials more particularly based on aliphatic polyesters issued from both renewable (agrochemical) and fossil (petrochemical) resources.On one side,REx will be approached for producing in a continuous way biodegradable aliphatic polyesters by ring-opening polymerization of lactones.Tin and aluminum-based catalysts will be considered for quantitatively converting the cyclic monomer in high molecular weight polyester chains within residence time of a few minutes only.On the other hand,such polyesters will undergo various chemical modifications again performed by REx.Self-branching reactions will be investigated in order to compensate the characteristic molecular weight reduction of the polyester chains as triggered by hydrolysis and/or transesterification side-reactions.Controlled functionalization reactions by maleic anhydride treatment will be studied as well.Finally biodegradable composite materials will be produced by REx and will rely upon the interface compatibilization between the polyester matrix and natural fillers such as starch granules or talc microparticles.
机译:该贡献旨在审查反应性挤出(REx)技术如何参与可生物降解的聚合物材料的设计和开发,尤其是基于可再生(农业化学)和化石(石化)资源中发行的脂族聚酯。通过内酯的开环聚合以连续方式生产可生物降解的脂肪族聚酯的方法。将考虑使用锡和铝基催化剂在几分钟的停留时间内定量转化高分子量聚酯链中的环状单体。另一方面,这种聚酯将再次通过REx进行各种化学修饰。将研究自支化反应,以补偿由于水解和/或酯交换副反应引发的聚酯链的特征性分子量降低。通过顺丁烯二酸酐处理最终可生物降解的复合材料将由REx生产,并将依赖于聚酯基质与天然填料(如淀粉颗粒或滑石微粒)之间的界面相容性。

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