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Micelle-template synthesis of hollow silica spheres for improving water vapor permeability of waterborne polyurethane membrane

机译:中空二氧化硅球的胶束模板合成以改善水性聚氨酯膜的水蒸气渗透性

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摘要

Hollow silica spheres (HSS) with special interior spaces, high specific surface area and excellent adsorption and permeability performance were synthesized via micelle-template method using cetyl trimethyl ammonium bromide (CTAB) micelles as soft template and tetraethoxysilane (TEOS) as silica precursor. SEM, TEM, FT-IR, XRD, DLS and BET-BJH were carried out to characterize the morphology and structure of as-obtained samples. The results demonstrated that the samples were amorphous with a hollow structure and huge specific surface area. The growth of HSS was an inward-growth mechanism along template. Notably, we have provided a new and interesting fundamental principle for HSS materials by precisely controlling the ethanol-to-water volume ratio. In addition, the as-obtained HSS were mixed with waterborne polyurethane (WPU) to prepare WPU/HSS composite membrane. Various characterizations (SEM, TEM, FT-IR and TGA) revealed the morphology, polydispersity and adherence between HSS and WPU. Performance tests showed that the introduction of HSS can improve the water vapor permeability of composite membrane, promoting its water resistance and mechanical performance at the same time.
机译:以十六烷基三甲基溴化铵(CTAB)胶束为软模板,以四乙氧基硅烷(TEOS)为二氧化硅前体,通过胶束-模板法合成了具有特殊内部空间,高比表面积,优异的吸附和渗透性能的空心二氧化硅球(HSS)。用SEM,TEM,FT-IR,XRD,DLS和BET-BJH表征所得样品的形貌和结构。结果表明样品是无定形的,具有空心结构和巨大的比表面积。 HSS的生长是沿着模板向内生长的机制。值得注意的是,通过精确控制乙醇与水的体积比,我们为HSS材料提供了新的有趣的基本原理。另外,将获得的HSS与水性聚氨酯(WPU)混合以制备WPU / HSS复合膜。各种表征(SEM,TEM,FT-IR和TGA)揭示了HSS和WPU之间的形态,多分散性和粘附性。性能测试表明,HSS的引入可以提高复合膜的水蒸气透过率,同时提高其耐水性和机械性能。

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