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Generation Of Monodisperse Mesoporous Silica Microspheres With Controllable Size And Surface Morphology In A Microfluidic Device

机译:在微流控装置中生成尺寸和表面形态可控的单分散介孔二氧化硅微球

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摘要

A one-step in situ method, termed microfluidic diffusion-induced self-assembly, for the synthesis of monodisperse ordered mesoporous silica microspheres, is reported. The method combines microfluidic generation of uniform droplets and subsequent in situ rapid solvent diffusion-induced self-assembly within the microfluidic channel. The mesoporous silica microspheres prepared in this way reveal well-ordered 2D hexagonal mesostructures with unprecedented corrugated surface morphology of disordered mesopores that are larger than 15 nm. It is speculated that the formation of an interfacial subphase and rapid diffusion of solvent to oil are attributed to the formation of the unique surface morphology. It is also shown that the surface morphology and the particle size of the mesoporous silica microspheres can be systematically controlled by adjusting fluidic conditions.
机译:报道了一种单步原位方法,称为微流体扩散诱导的自组装,用于合成单分散有序介孔二氧化硅微球。该方法结合了均匀液滴的微流体产生和随后在微流体通道内原位快速溶剂扩散诱导的自组装。以这种方式制备的介孔二氧化硅微球显示出秩序井然的二维六角形介孔结构,具有大于15 nm的无序介孔的前所未有的波纹表面形态。据推测,界面亚相的形成和溶剂向油中的快速扩散归因于独特的表面形态的形成。还显示出可以通过调节流体条件来系统地控制介孔二氧化硅微球的表面形态和粒径。

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