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Synthesis of hybrid materials using graft copolymerization on non-cellulosic polysaccharides via homogenous ATRP

机译:通过均质ATRP在非纤维素多糖对非纤维素多糖的合成杂种材料

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Inclusion of various polymeric chains with different lengths and functionalities (such as hydrophobic, ionic, acidic, basic, etc) into polysaccharide backbones leads to new polymeric materials with interesting properties that may self-assembled into different aggregations and have the potential to for use in a variety of applications. This review highlights the application of various ATRP techniques (such as "grafting-from" and "grafting-to") to modify non-cellulosic polysaccharides under homogenous condition. Chemical modification of chitosan, pullulan, dextran, agarose, hyaluronic acid (hyaluronan), starch, glycogen, heparin, chitin, guar gum, locust bean gum, and dextrin using ATRP are described. Pre-functionalization or protection of some functional groups in the polysaccharide backbone required in some cases to prepare a precursor with higher solubility in organic solvents is illustrated. For each polymerization, the strategy for synthesis of the copolymer and the condition of the polymerization is described in detail along with the properties of the prepared copolymers. Furthermore, examples that produced materials with the potential for use in a specific application are reviewed in summary. (C) 2017 Elsevier B.V. All rights reserved.
机译:将具有不同长度和功能(例如疏水性、离子性、酸性、碱性等)的各种聚合物链包含到多糖主链中,可以产生具有有趣性质的新聚合物材料,这些材料可以自组装成不同的聚集体,并有可能用于各种应用。本文综述了各种ATRP技术(如“接枝自”和“接枝至”)在均质条件下对非纤维素多糖进行改性的应用。描述了用ATRP对壳聚糖、普鲁兰多糖、葡聚糖、琼脂糖、透明质酸(透明质酸)、淀粉、糖原、肝素、几丁质、瓜尔豆胶、刺槐豆胶和糊精进行化学改性。说明了在某些情况下制备在有机溶剂中具有较高溶解度的前体所需的多糖主链中某些官能团的预官能化或保护。对于每次聚合,详细描述了共聚物的合成策略和聚合条件,以及所制备共聚物的性质。此外,还总结了生产具有特定应用潜力的材料的示例。(C) 2017爱思唯尔B.V.版权所有。

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