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Synthesis and characterization of hydrophobically modified starch by ring opening polymerization using imidazole as catalyst

机译:咪唑为催化剂的开环聚合疏水改性淀粉的合成与表征

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摘要

This paper reports on the synthesis of polyester-grafted starch (starch-g-PCL) by in situ ring-opening polymerization (ROP) of epsilon-caprolactone (epsilon-CL) catalyzed by a metal free organic catalyst (imidazole). This reaction has been carried outin bulk, without solvent. The structure of starch-g-PCLwas characterized by IR, NMR, DSC, and SEM. A moisture sorption isotherm of modified starch revealed a more hydrophobic material. A water contact angle measurement also confirmed the hydrophobic character of starch-g-PCL. As expected, this chemical modification reduced the diffusion coefficient of water. The use of an organic catalyst instead of the traditional organometallic catalyst offers an interesting alternative for producing moisture tolerant thermoplastic starch-based materials.
机译:本文报道了由游离金属有机催化剂(咪唑)催化的ε-己内酯(ε-CL)的原位开环聚合(ROP)合成聚酯接枝淀粉(淀粉-g-PCL)的方法。该反应已在没有溶剂的条件下进行。通过IR,NMR,DSC和SEM对淀粉-g-PCL的结构进行了表征。改性淀粉的水分吸附等温线显示出疏水性更高的物质。水接触角的测量还证实了淀粉-g-PCL的疏水性。不出所料,这种化学修饰降低了水的扩散系数。使用有机催化剂代替传统的有机金属催化剂为生产耐湿热塑性淀粉基材料提供了一种有趣的选择。

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