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Morphology-controlled synthesis of SiO2 hollow microspheres using pollen grain as a biotemplate

机译:以花粉粒为生物模板的SiO2中空微球形态控制合成

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Hollow surface-structured silica microspheres, a potential candidate for drug delivery systems, were synthesized using the rape pollen grain as a biotemplate via a facile sol-gel coating followed by a calcination process. Different surface morphologies relating to the controllable release property were also achieved on the as-prepared silica hollow microspheres by changing the ratio of the tetraethyl orthosilicate (TEOS) and water in sols. Differential scanning calorimetry (DSC) and thermogravity (TG), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), as well as Fourier transform infrared spectroscopy (FT-IR) were utilized to characterize the original pollen grain, the silica sols-coated pollen grain and the as-prepared hollow silica microspheres, respectively. Results indicated that the pollen grain would be removed at around 500 degrees C, and the sol coating was kept to form hollow microspheres. Physical adsorption was proved to be the main effect in the sol coating. A speculation on the formation mechanism of different morphologies is also given.
机译:使用油菜花粉颗粒作为生物模板,通过简便的溶胶-凝胶涂层,随后的煅烧过程,合成了中空的表面结构化二氧化硅微球(可能是药物输送系统的潜在候选物)。通过改变原硅酸四乙酯(TEOS)和溶胶中水的比例,在制备的二氧化硅空心微球上也获得了与可控释放性能有关的不同表面形态。利用差示扫描量热法(DSC)和热重(TG),扫描电子显微镜(SEM),能量色散光谱(EDS)以及傅里叶变换红外光谱(FT-IR)来表征原始花粉颗粒,硅溶胶包衣的花粉粒和制备的空心二氧化硅微球。结果表明,花粉颗粒将在500摄氏度左右被去除,溶胶涂层被保留以形成空心微球。物理吸附被证明是溶胶涂层的主要作用。还推测了不同形态的形成机理。

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