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Preparation of Compositional Gradient Polymeric Films Based on Gradient Mesh Template

机译:基于梯度网格模板的梯度聚合物复合膜的制备

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In this paper, a template-filling method was found to prepare composition gradient gelatin films by incorporating α-[3-(2,3-epoxypropoxy) propyl]-ω-butyl-polydimethylsiloxane (PDMS–E) grafted gelatin (PGG) into a gradient gelatin mesh template. The method can be used to prepare other composition gradient biopolymer films. Gradient mesh template prepared by the methacrylic anhydride cross-linked gelatin under temperature gradient field. The porosity of the template decreased from 89 to 35% which was accompanied by decrease in average pore size from 160 to 50 μm. Colloidal particles about 0.9~10 μm were formed from PGG after adding them to a mixed solvent system of 9:1 ( v / v ) of ethanol/water, which were filled in the mesh template under vacuum (0.06 MPa). A gradient film was obtained after drying at room temperature for 48 h. The results of scanning electron microscope-energy dispersive X-ray combined with freezing microtome and Fourier transform infrared spectroscopy suggested that the distribution of the Si element along the thickness showed a typical gradient pattern, which led to hydrophilic/hydrophobic continuous changing along the thickness of film. The water vapor permeability, thermal gravimetric analysis, differential scanning calorimetry and dynamic mechanical tensile results show that the gradient films had excellent water vapor permeability and flexibility, and hence could be used as biomimetic materials and leather finishing agents.
机译:本文发现了一种模板填充方法,通过将α-[3-(2,3-环氧丙氧基)丙基]-ω-丁基-聚二甲基硅氧烷(PDMS-E)接枝的明胶(PGG)掺入来制备组成梯度明胶膜。渐变明胶网格模板。该方法可用于制备其他组成梯度的生物聚合物膜。由甲基丙烯酸酐交联的明胶在温度梯度场下制备的梯度网格模板。模板的孔隙率从89%降低到35%,同时平均孔径从160μm降低到50μm。将PGG加入9:1(v / v)乙醇/水的混合溶剂体系中后,由PGG形成约0.9〜10μm的胶体颗粒,将该胶体颗粒在真空(0.06 MPa)下填充到网模板中。在室温下干燥48小时后获得梯度膜。扫描电子显微镜-能量色散X射线结合冷冻切片机和傅里叶变换红外光谱的结果表明,硅元素沿厚度的分布呈典型的梯度模式,导致亲水/疏水性沿厚度方向连续变化。电影。水蒸气渗透性,热重分析,差示扫描量热法和动态机械拉伸结果表明,该梯度膜具有优异的水蒸气渗透性和柔韧性,因此可以用作仿生材料和皮革涂饰剂。

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