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ln-Situ Synthesis of the Hollow Silica Microspheres with Porous Surface by Using Chemical Modified Pollen Grains as Biotemplate

机译:通过使用化学改性的花粉粒作为Biotemplate的多孔表面与多孔表面的中空二氧化硅微球的合成

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Hollow silica microspheres with porous surface were synthesized by using the pollen grains as biotemplate through an in-situ synthesis process, in which the pollen grains were surface modified by ammonium oleate. Scanning electron microscopy, Fourier transform infrared spectroscopy and nitrogen adsorption-desorption porosimetry analyzer were applied to investigate the as-prepared microspheres. Bovine serum albumin was used as the model drug to estimate the adsorption property. And the effect of the different amount of tetraethoxysilane during the synthesis process were discussed in this paper. Results indicated that the hierarchical network of the pollen wall could be well replicated through this method, in which the hydrophobic interaction between the pollen wall and surfactant as well as the electrostatic interaction between the surfactant and the hydrolysate of tetraethoxysilane were considered as the key factors for the replication. The hollow silica microspheres have loading capacity for the model drag, and the adsorption property of this microsphere could be easily adjusted by changing the amount of tetraethoxysilane.
机译:通过使用原位合成方法使用花粉颗粒作为生物膜来合成具有多孔表面的中空二氧化硅微球,其中通过铵油e改性花粉晶粒。扫描电子显微镜,傅里叶变换红外光谱和氮吸附 - 解吸孔隙率分析仪探讨了制备的微球。牛血清白蛋白用作模型药物以估计吸附性能。本文讨论了在合成过程中不同量的四乙氧基硅烷的影响。结果表明,通过该方法可以很好地复制花粉壁的分层网络,其中花粉壁和表面活性剂之间的疏水相互作用以及表面活性剂与四乙氧基硅烷的水解产物之间的静电相互作用被认为是关键因素复制。中空二氧化硅微球具有用于模型阻力的装载能力,并且通过改变四乙氧基硅烷的量,可以容易地调节该微球的吸附性能。

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