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首页> 外文期刊>Soft matter >Investigation of the formation, structure and release characteristics of self-assembled composite films of cellulose nanofibrils and temperature responsive microgels
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Investigation of the formation, structure and release characteristics of self-assembled composite films of cellulose nanofibrils and temperature responsive microgels

机译:调查的形成、结构和自组装的释放特征复合纤维素纺锤和电影温度响应性微凝胶

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摘要

The possibility of forming self-organized films using charge-stabilized dispersions of cellulose I nanofibrils and microgel beads of poly-(N-isopropylacrylamide-co-acrylic acid) copolymer is presented. The build-up behavior and the properties of the layer-by-layer (LbL)-constructed films were studied using quartz crystal microbalance with dissipation (QCM-D) and ellipsometry. The morphology of the formed films was also characterized using atomic force microscopy (AFM) imaging. The applied methods clearly demonstrated the successful LbL-assembly of the monodisperse microgels and nanofibrils. The in situ QCM-D measurements also revealed that contrary to the polyelectrolyte bound microgel particles, the nanofibrils-bound gel beads preserve their highly swollen state and do not suffer a partial collapse due to the lack of interdigitation of the oppositely charged components. To probe the accessibility of the gel beads in the formed films, the room temperature (~25 °C) loading and release of a fluorescent dye (FITC) was also investigated. The incorporation of the cellulose nanofibrils into the multilayer resulted in an open structure that was found easily penetrable for the dye molecules even at constant room temperature, which is in sharp contrast with previously reported systems based on synthetic polyelectrolytes. The amount of dye released from the multilayer films could be fine-tuned with the number of bilayers. Finally, the thermoresponsivity of the films was also shown by triggering the burst release of the loaded dye when the film was collapsed.
机译:形成自组织的电影的可能性使用纤维素charge-stabilized分散我纺锤和微凝胶珠的保利(N-isopropylacrylamide-co-acrylic酸)共聚物。的属性分层技术使用石英(LbL)构造的电影进行了研究水晶与耗散(QCM-D)和微量天平椭圆光度法。也为使用原子力显微镜(AFM)成像。LbL-assembly清楚地展示了成功单分散的微凝胶和纺锤。原位QCM-D测量也显示与绑定微凝胶的聚合电解质粒子,nanofibrils-bound凝胶珠保持高度肿胀的状态,不由于缺少遭受部分崩溃并指电荷相反组件。珠形成的电影,房间的温度(~ 25°C)加载和释放荧光染料(FITC)也被调查。纤维素的纺锤多层导致了一个开放的结构,被发现染料分子甚至在容易穿透室温恒定,这是鲜明的与之前报道的系统的基础在合成聚合电解质。从多层膜能发布调整的影响。的thermoresponsivity电影也是显示通过触发爆炸释放的加载染料薄膜时崩溃。

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