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Controllable preparation and formation mechanism of monodispersed silica particles with binary sizes

机译:二元粒径单分散二氧化硅颗粒的可控制备及形成机理

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Monodispersed silica particles with bimodal size distribution were successfully prepared through adding an ethanol (EtOH) solution containing tetraethylorthosilicate (TEOS) dropwise into an ammonia EtOH solution at a constant low rate. The effects of the reaction parameters such as ammonia/ethanol ratio, feeding rate of TEOS solution, reaction temperature, and time on the size and size distribution of the as-obtained particles were investigated. Based on these phenomena, a modified LaMer model of nucleation and growth mechanism was proposed to reasonably explain the formation of the as-obtained silica particles with bimodal size distribution. The as-prepared monodispersed silica particles with bimodal size distribution can be directly fabricated into binary colloidal crystals with small particles surrounding large particles by evaporation-induced cooperative self-assembly. This suggests that the method reported here provides a straightforward and effective route to the in situ fabrication of novel binary colloidal crystals and their replicated patterns in one reaction system.
机译:通过以恒定的低速向氨EtOH溶液中滴加含有原硅酸四乙酯(TEOS)的乙醇(EtOH)溶液,成功制备了具有双峰尺寸分布的单分散二氧化硅颗粒。研究了氨/乙醇比,TEOS溶液的进料速度,反应温度和时间等反应参数对所得颗粒尺寸和粒径分布的影响。基于这些现象,提出了改进的LaMer成核和生长机理模型,以合理地解释所获得的具有双峰尺寸分布的二氧化硅颗粒的形成。所制备的具有双峰尺寸分布的单分散二氧化硅颗粒可以通过蒸发诱导的协同自组装直接制备为二元胶体晶体,其中小颗粒围绕着大颗粒。这表明本文报道的方法为在一个反应​​系统中原位制备新型二元胶体晶体及其复制模式提供了直接有效的途径。

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