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首页> 外文期刊>Macromolecules >Development of surface morphology in multilayered films prepared by layer-by-layer deposition using poly(acrylic acid) and hydrophobically modified poly(ethylene oxide)
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Development of surface morphology in multilayered films prepared by layer-by-layer deposition using poly(acrylic acid) and hydrophobically modified poly(ethylene oxide)

机译:通过使用聚丙烯酸和疏水改性的聚环氧乙烷逐层沉积制备的多层薄膜的表面形态发展

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We report the fabrication of free-standing multilayered thin films based on the layer-by-layer (LbL) deposition method. The isolation of multilayer thin film allows us to characterize the materials properties of such films in great detail. Poly(acrylic acid) (PAA) and hydrophobically modified poly(ethylene oxide) (HM-PEO) multilayer films have been prepared using the LbL method based upon hydrogen-bonding interactions. The LbL film composition and thermal properties were obtained as a function of the number of layer pairs using thermal gravimetric analysis (TGA) as well as differential scanning calorimetry (DSC). Above the critical number of layer pairs, the HM-PEO/PAA multilayer films exhibit complex surface structure owing to the hydrophobic nature of HM-PEO (i.e., micelle formation). The unique surface morphology was studied using optical microscopy and fluorescence microscopy, where pyrene dyes incorporated into the hydrophobic cores of HM-PEO micelles allowed us to monitor the sites of HM-PEO micelles. We demonstrate that the film morphology can be controlled by varying the solvent polarity, temperature, and molecular weight of HM-PEO. It is also noted that the introduction of hydrophobic moieties in PEO significantly facilitates the film isolation from various substrates, yielding free-standing multilayer films.
机译:我们报告了基于逐层(LbL)沉积方法的独立式多层薄膜的制造。多层薄膜的隔离使我们能够非常详细地表征此类薄膜的材料特性。聚(丙烯酸)(PAA)和疏水改性的聚(环氧乙烷)(HM-PEO)多层薄膜已使用基于氢键相互作用的LbL方法制备。使用热重分析(TGA)和差示扫描量热法(DSC)获得了LbL膜的成分和热性能,作为层对数的函数。在层对的临界数目以上,由于HM-PEO的疏水性(即,胶束形成),HM-PEO / PAA多层膜表现出复杂的表面结构。使用光学显微镜和荧光显微镜研究了独特的表面形态,其中pyr染料掺入HM-PEO胶束的疏水核中使我们能够监测HM-PEO胶束的位点。我们证明可以通过改变HM-PEO的溶剂极性,温度和分子量来控制薄膜的形态。还应注意,在PEO中引入疏水部分显着促进了膜与各种基材的分离,从而产生了独立的多层膜。

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