Experimental Physics, Saarland University, 66123, Saarbrücken, Germany.
Lab Chip. 2010 Jul 7;10(13):1700-5. doi: 10.1039/b926976b. Epub 2010 Apr 19.
A droplet-based microfluidic reaction scheme is developed where the chemical reactants are dispensed with precise volume control into pairs of droplets. The reaction is activated by coalescing droplet pairs and fast mixing inside the coalesced droplets. Furthermore, the pre-processing of the chemical products is included in the microfluidic device. This reaction scheme allows the performing of precisely volume controlled reactions and long operation times without any clogging even if precipitates or sticky gels are formed during the reaction. Using this approach and optimizing the reaction parameters, we generate mesoporous silica microspheres from a rapid gelation optimized sol-gel synthesis route. The produced silica particles have a superior surface area of 820 m(2) g(-1) and a narrow pore radius distribution of around 2.4 nm.
一种基于液滴的微流控反应方案被开发出来,其中化学反应物通过精确的体积控制分配到成对的液滴中。反应通过液滴对的聚合并在聚结的液滴内快速混合而被激活。此外,化学产物的预处理也包含在微流控装置中。即使在反应过程中形成沉淀物或粘性凝胶,该反应方案也允许进行精确体积控制的反应和长时间操作而不会发生堵塞。通过使用这种方法并优化反应参数,我们从快速胶凝优化的溶胶-凝胶合成途径中生成了介孔硅微球。所产生的硅颗粒具有 820 m²/g 的优越表面积和约 2.4nm 的窄孔径分布。