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Microfluidic-assisted Formation of Highly Monodisperse and Mesoporous Silica Soft Microcapsules

机译:高单分散性和介孔二氧化硅软微囊的微流辅助形成

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摘要

The fabrication of mesoporous silica microcapsules with a highly controlled particle size ranging in the micrometer size presents a major challenge in many academic and industrial research areas, such as for the developement of smart drug delivery systems with a well controlled loading and release of (bio)active molecules. Many studies based on the solvent evaporation or solvent diffusion methods have been developed during the last two decades in order to control the particle size, which is often found to range at a sub-micrometer scale. Droplet-based microfluidics proved during the last decade a powerful tool to produce highly monodisperse and mesoporous silica solid microspheres with a controllable size in the micrometer range. We show in the present study, in contrast with previous microfluidic-assisted approaches, that a better control of the diffusion of the silica precursor sol in a surrounding perfluorinated oil phase during the silica formation process allows for the formation of highly monodisperse mesoporous silica microcapsules with a diameter ranging in the 10 micrometer range. We show also, using optical, scanning and transmission electron microscopies, small angle x-ray diffraction and BET measurements, that the synthesized mesoporous silica microcapsules exhibit a soft-like thin shell with a thickness of about 1 μm, across which 5.9 nm sized mesopores form a well-ordered hexagonal 2D network. We suggest and validate experimentally a model where the formation of such microcapsules is controlled by the solvent evaporation process at the droplet-air interface.
机译:在许多学术和工业研究领域中,具有在微米尺寸范围内高度受控的粒径的介孔二氧化硅微胶囊的制造提出了重大挑战,例如开发具有良好控制的(生物)负载和释放的智能药物递送系统活性分子。在过去的二十年中,已经进行了许多基于溶剂蒸发或溶剂扩散方法的研究,以控制粒径,该粒径通常在亚微米范围内。在过去的十年中,基于液滴的微流控技术被证明是一种强大的工具,可生产尺寸可控制在微米范围内的高度单分散和介孔的二氧化硅固体微球。与以前的微流体辅助方法相比,我们在本研究中表明,在二氧化硅形成过程中更好地控制二氧化硅前体溶胶在周围全氟化油相中的扩散,可以形成高度单分散的介孔二氧化硅微胶囊。直径在10微米范围内。我们还使用光学,扫描和透射电子显微镜,小角度X射线衍射和BET测量结果表明,合成的介孔二氧化硅微囊表现出柔软的薄壳,厚度约为1μm,跨过5.9μnm大小的中孔形成一个有序的六角形二维网络。我们建议并通过实验验证了这样一种模型,在这种模型中,这种微胶囊的形成是由液滴-空气界面处的溶剂蒸发过程控制的。

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