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Hyperbranched polyethylenimines as versatile precursors for the preparation of different type of unimolecular micelles

机译:超支化聚乙烯亚胺作为通用前体,用于制备不同类型的单分子胶束

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Hyperbranched polyethylenimine (HPEI) was successfully employed as precursor for the preparation of unimolecular inverted and aqueous micelles. The unimolecular inverted micelles (UIMs) obtained by the amidation of HPEI with 1,1'-carbonyldiimidazole (CDI) activated palmitic acid exhibited high encapsulation efficiency for hydrophilic anionic dyes and the efficiency could be enhanced significantly by decreasing the degree of amidation or quaternizing the residual amines. The weight ratio of loaded guests to the amidated HPEIs was not dependent on the molecular weight of HPEI core when the degree of amidation was kept constant. Decreasing the length of the aliphatic chain from 16 to 12 carbons led the hydrophilic anionic dye encapsulation of the resultant UIMs to be less efficient. The amidated linear polyethylenimine (LPEI) analogue had also been prepared for structural comparison. Amidated LPEI could also encapsulate hydrophilic anionic guest molecules, but much inefficiently compared with its hyperbranched analogues. All the UIMs could also encapsulate hydrophilic cationic dye, but those with cationic interior were much more efficient than the others. Unimolecular aqueous micelle was synthesized by the Michael-addition reaction of HPEI with poly(ethylene glycol) methyl ether acrylate. Pyrene was used as the hydrophobic probe for testing its encapsulation behavior and it was found that the encapsulated pyrene molecules not only spread in the HPEI core, but also in the poly(ethylene glycol) shell. The pyrene molecules in the poly(ethylene glycol) shell could be released by the addition of NaCl.
机译:超支化聚乙烯亚胺(HPEI)已成功地用作制备单分子倒置和水性胶束的前体。 HPEI与1,1'-羰基二咪唑(CDI)活化的棕榈酸酰胺化制得的单分子反胶束(UIMs)对亲水性阴离子染料具有很高的包封效率,并且可以通过降低酰胺化程度或对其进行季铵化来显着提高效率。残留胺。当酰胺化度保持恒定时,负载的客体与酰胺化的HPEI的重量比不取决于HPEI核的分子量。将脂族链的长度从16个碳减少到12个碳,导致所得UIM的亲水性阴离子染料封装效率较低。酰胺化的线性聚乙烯亚胺(LPEI)类似物也已制备用于结构比较。酰胺化的LPEI也可以包封亲水性阴离子客体分子,但与其超支化类似物相比效率低得多。所有的UIM都可以包封亲水性阳离子染料,但是具有阳离子内部结构的UIM则要比其他的有效得多。通过HPEI与聚(乙二醇)甲基醚丙烯酸酯的迈克尔加成反应合成了单分子水性胶束。 P用作疏水探针测试其包封行为,发现包封的pyr分子不仅在HPEI核中扩散,而且在聚(乙二醇)壳中扩散。聚(乙二醇)壳中的分子可以通过添加氯化钠来释放。

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