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Mesoporous Organosilica Hollow Microspheres with Hierarchical Structures on the Shell

机译:壳层结构具有介孔的有机硅空心微球

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Hierarchical mesoporous organosilicas with hollow structures have been readily synthesized from one template approach by using Pluronic P123 as a surfactant and 1,2-bis(trimethoxysilyl)ethane as precursor in mild HAc-NaAc (pH = 4.4) buffer solution. The obtained hierarchical mesoporous organosilica hollow spheres with raspberry-like morphology have at least three level hierarchical structures: (1) hollow micro sphere (particle size of 10 to 35 μm), (2) solid nanospheres (350~600 nm), the coexistence of mesopore (pore diameter, 12 nm) and micropore (pore diameter, 0.8 nm) on the shell. It was found that the hollow spheres with smooth surface and raspberry-like morphology could be controllably synthesized by varying the stirring time. Alcohols with different chains were also investigated, the hydrophilic alcohol with more -OH such as glycerol has been found play an important role in the synthesis of such hierarchically hollow sphere. These organosilica hollow spheres with hierarchical porosity are promising candidates for applications in nanoreactors, selective sorption, and controlled release.
机译:通过使用Pluronic P123作为表面活性剂和1,2-双(三甲氧基甲硅烷基)乙烷作为前体在温和的HAc-NaAc(pH = 4.4)缓冲溶液中,已经很容易从一种模板方法合成具有空心结构的分层介孔有机硅。得到的具有树莓状形态的分级介孔有机硅空心球至少具有三个层次的分级结构:(1)空心微球(粒径为10-35μm),(2)固体纳米球(350〜600 nm),共存壳上的中孔(孔径为12 nm)和微孔(孔径为0.8 nm)。发现通过改变搅拌时间可以控制合成具有光滑表面和树莓状形态的空心球。还研究了具有不同链的醇,发现具有更多-OH的亲水性醇(如甘油)在这种分级空心球的合成中起着重要作用。这些具有分级孔隙率的有机硅空心球是有前途的候选物,可用于纳米反应器,选择性吸附和控制释放。

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