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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Complexation of Terpyridine-Containing Dextrans: Toward Water-Soluble Supramolecular Structures
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Complexation of Terpyridine-Containing Dextrans: Toward Water-Soluble Supramolecular Structures

机译:含联吡啶的葡聚糖的络合物:走向水溶性超分子结构

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Dextran was functionalized with 6-(2,20:60,200-terpyridin-40-yloxy)-hexanoic acid using two different ratios of terpyridine to dextran, leading to terpyridine-functionalized dextran esters possessing different degrees of substitution (DS=0.23–0.41). The intra- and intermolecular complexation behavior of both functionalized biopolymers was studied using FeII metal ions as well as activated RuIII complexes. The complexation behavior in the first case was studied by UV– visible and viscosity titration experiments. In the latter case, a water soluble comb-polymer could be obtained when using a PEG- functionalized terpyridine RuII moiety for complexation. Moreover, nanoprecipitation was applied to self-assemble the functionalized dextrans into nanoparticles.
机译:使用两种不同比例的三联吡啶对右旋糖酐,用6-(2,20:60,200-吡啶吡啶-40-羟氧基)-己酸对右旋糖酐进行官能化,导致具有不同取代度的三联吡啶官能化右旋糖酐酯(DS = 0.23–0.41) 。使用FeII金属离子以及活化的RuIII络合物研究了两种功能化生物聚合物的分子内和分子间络合行为。在第一种情况下,通过紫外可见光和粘度滴定实验研究了络合行为。在后一种情况下,当使用PEG官能化的吡啶吡啶RuII部分进行络合时,可以获得水溶性梳型聚合物。此外,应用纳米沉淀将功能化的葡聚糖自组装成纳米颗粒。

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