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Layer-by-layer assembled hydrogel nanocomposite film with a high loading capacity

机译:具有高负载能力的逐层组装的水凝胶纳米复合膜

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摘要

The layer-by-layer assembly technique is a method that widely used in the preparation of nanostructured multilayer ultrathin films. We fabricated a hydrogel nanocomposite film by alternating the deposition of a core-shell poly[(dimethylimino)(2-hydroxy-1,3-propanedily) chloride] (PDMIHPC)-laponite solution and poly(acrylic acid). The growth of the deposition procedure was proven by ultraviolet-visible spectroscopy and spectroscopic ellipsometry. The surface morphology of the films was observed by scanning electron microscopy. The films could reversibly load and release methylene blue (MB) dye, which was used as an indicator. It took about 4.5 h to reach loading equilibrium at pH 9.0. The loading capacity of the film for MB was as large as 4.48 μg/cm ~2 per bilayer because of the introduction of the core-shell PDMIHPC-laponite as a film component. Nearly 90% of MB was released at pH 3.0 or in a 300 mM NaCl solution within 2.5 h. The loading and release processes were greatly influenced by the ionic strength and pH value of the MB solution. The hydrogel nanocomposite film showed good pH-triggered loading-release reversibility and suggested potential applications in controlled drug-delivery systems and smart materials.
机译:逐层组装技术是广泛用于制备纳米结构多层超薄膜的方法。我们通过交替沉积核-壳聚[(二甲基亚氨基)(2-羟基-1,3-丙烷)氯化物](PDMIHPC)-膨润土溶液和聚丙烯酸制备了水凝胶纳米复合膜。紫外可见光谱和椭圆偏振光谱法证明了沉积过程的增长。通过扫描电子显微镜观察膜的表面形态。薄膜可以可逆地加载和释放用作指示剂的亚甲基蓝(MB)染料。在pH 9.0下花了约4.5小时达到负载平衡。由于引入了核-壳PDMIHPC-膨润土作为薄膜成分,MB薄膜对双层的负载能力高达每双层4.48μg/ cm〜2。在pH值3.0或300 mM NaCl溶液中2.5小时内释放了近90%的MB。加载和释放过程受MB溶液的离子强度和pH值影响很大。该水凝胶纳米复合膜显示出良好的pH触发的加载-释放可逆性,并暗示了其在受控药物递送系统和智能材料中的潜在应用。

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