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首页> 外文期刊>Journal of Applied Polymer Science >Effect of nonsolvent coagulant on the morphology and radionuclide detection efficiency of CAYS-impregnated polysulfone films
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Effect of nonsolvent coagulant on the morphology and radionuclide detection efficiency of CAYS-impregnated polysulfone films

机译:非溶剂混凝剂对CAYS浸渍聚砜膜的形貌和放射性核素检测效率的影响

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Single- or double-layered porous films consisting of polysulfone (PSF) and cerium-activated yttrium silicate (CAYS) were prepared through the phase inversion of polymeric solutions. For a single-layered structure, a casting solution including n-methylpyrrolidone (NMP) as a solvent was cast on a glass substrate and solidified by immersing into a nonsolvent bath. In a double-layered structure, the bottom layer is a dense PSF film, prepared by vacuum coagulation of a methylene chloride/PSF solution. The top layer was formulated by coagulating the NMP solution, cast over the dense film, in a nonsolvent bath. The morphology and the radionuclide detection efficiency of the prepared films were significantly affected by the nonsolvent coagulants used. The water-coagulated, double-layered film showed a relatively clear-cut interface between the two layers, indicating the rapid coagulation of the second layer. On the contrary, the film coagulated by isopropanol retained well-developed sponge structures highly intertwined in the interface, associated with the delayed precipitation of the second layer. When spotted on the prepared films, radionuclides stayed mainly on the top surface of the isopropanolcoagulated film, but went deep into the substructure of the film coagulated with water. In comparison with the monolayered films, the double-layered ones improved the detection capacity of the spotted radionuclides, owing to the dense support layer. (c) 2005 Wiley Periodicals, Inc.
机译:通过聚合物溶液的相转化制备了由聚砜(PSF)和铈活化硅酸钇(CAY​​S)组成的单层或双层多孔膜。对于单层结构,将包含正甲基吡咯烷酮(NMP)作为溶剂的浇铸溶液浇铸在玻璃基板上,并通过浸入非溶剂浴中而固化。在双层结构中,底层是致密的PSF膜,通过真空凝结二氯甲烷/ PSF溶液制得。通过在非溶剂浴中凝结NMP溶液(浇铸在致密薄膜上)来配制顶层。所用薄膜的形态和放射性核素检测效率受所用非溶剂凝结剂的影响很大。水凝结的双层膜在两层之间显示出相对清晰的界面,表明第二层迅速凝结。相反,用异丙醇凝结的薄膜保留了高度发达的海绵结构,该结构高度交织在界面上,与第二层的沉淀延迟有关。当在制备的薄膜上发现斑点时,放射性核素主要停留在异丙醇凝结薄膜的顶面上,但深入到水凝结的薄膜的下部结构中。与单层薄膜相比,双层薄膜由于致密的支撑层而提高了斑点放射性核素的检测能力。 (c)2005年Wiley Periodicals,Inc.

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