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Polymers from renewable 1,4:3,6-dianhydrohexitols (isosorbide, isomannide and isoidide): A review

机译:来自可再生的1,4:3,6-二脱水己糖醇的聚合物(异山梨醇,异甘露糖苷和异麦芽糖苷):综述

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摘要

The use of 1,4:3,6-dianhydrohexitols, isosorbide, isomannide and isoidide in polymers is reviewed. 1,4:3,6-Dianhydrohexitols are derived from renewable resources from cereal-based polysaccharides. In the field of polymeric materials, these diols are essentially employed to synthesize or modify polycondensates. Their attractive features as monomers are linked to their rigidity, chirality, non-toxicity, and the fact that they are not derived from petroleum. First, the synthesis of high glass transition temperature polymers with good thermomechanical resistance is possible. Second, the chiral nature of 1,4:3,6-dianhydrohexitols may lead to specific optical properties. Finally, biodegradable polymers can be obtained. The production of isosorbide at the industrial scale with a purity satisfying the requirements for polymer synthesis suggests that isosorbide will soon emerge in industrial polymer applications. However, a deciding factor will be the reduction of polymerization time of these low-reactivity monomers to values compatible with economically viable production processes.
机译:综述了1,4:3,6-二脱水己糖醇,异山梨醇,异甘露糖苷和异麦芽糖醇在聚合物中的使用。 1,4:3,6-二氢己糖醇衍生自谷物基多糖的可再生资源。在聚合物材料领域,这些二醇基本上用于合成或改性缩聚物。它们作为单体的诱人特征与它们的刚性,手性,无毒性以及它们不是源自石油的事实有关。首先,可以合成具有良好的热机械抗性的高玻璃化转变温度的聚合物。其次,1,4:3,6-二脱水己糖醇的手性可能导致特定的光学性质。最后,可获得可生物降解的聚合物。以工业规模生产的纯度满足聚合物合成要求的异山梨醇表明,异山梨醇将很快出现在工业聚合物应用中。然而,决定性因素将是将这些低反应性单体的聚合时间减少至与经济可行的生产方法相容的值。

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