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Topology and porosity modulation of polyurea films using interfacial polymerization

机译:界面聚合法调节聚脲薄膜的拓扑结构和孔隙率

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摘要

Polyurea (PU) films are interesting owing to the high mechanical properties and wide range of applications. Here we report an interfacial synthesis of a PU thin film at the liquid-liquid interface using the reaction between diisocyanate and polyamines. Three amines - polyethylenimine (PEI), diethylenetriamine (DETA) and tris(2-aminoethyl) amine (TREN) were dissolved in the aqueous phase separately and allowed to react with an organic solution of hexamethylene diisocyanate (HMDI) at the liquid-liquid interface. The structure and morphologies of the films were established using spectroscopic and microscopic techniques. Smooth PU films were obtained from the reaction of HMDI with PEI, whereas films with holes and tubules were obtained from small molecular amines such as DETA and TREN. Such observations are explained based on the differences in solubility, reactivity of the reagents and molecular size dependant diffusion across the film. The effect of the changes in concentration of reactants and time of reaction on film thickness and transport of organic dye molecules through the film were investigated. PEI gave a smooth defect-free film of PU, whereas small molecular amines upon reaction with HMDI gave films with significant number of defects. To demonstrate the accessibility of functional groups on the film, adsorption of fluorescent dyes on the film surface was investigated. From the UV-Vis spectroscopic measurements, it is clear that acidic molecules adsorb on the surface of the films and the corresponding esters are not extracted efficiently by the film. In summary, the synthesis and characterization of PU films from multiple amines, and the transport of small molecules and adsorption of dyes on the surface of the films were established.
机译:聚脲(PU)薄膜由于其高机械性能和广泛的应用而备受关注。在这里,我们报告了使用二异氰酸酯和多胺之间的反应在液-液界面上进行PU薄膜的界面合成。将三种胺-聚乙烯亚胺(PEI),二亚乙基三胺(DETA)和三(2-氨基乙基)胺(TREN)分别溶解在水相中,并使其在液-液界面与六亚甲基二异氰酸酯(HMDI)的有机溶液反应。膜的结构和形态是使用光谱和显微技术确定的。光滑的PU膜是从HMDI与PEI的反应获得的,而带有孔和小管的膜则是从小分子胺(如DETA和TREN)获得的。这些观察结果是基于溶解度,试剂反应性和整个膜上分子大小相关扩散的差异而解释的。研究了反应物浓度和反应时间的变化对膜厚度和有机染料分子通过膜的传输的影响。 PEI产生了光滑的无缺陷PU膜,而小分子胺与HMDI反应后产生了具有大量缺陷的膜。为了证明官能团在膜上的可及性,研究了荧光染料在膜表面上的吸附。从UV-Vis光谱测量,很明显,酸性分子吸附在膜表面上,并且相应的酯不能被膜有效地提取。综上所述,建立了由多种胺组成的聚氨酯薄膜的合成与表征,以及小分子的迁移和染料在薄膜表面的吸附。

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