Department of Chemical Engineering, MIT, 77 Massachusetts Avenue, 66-350, Cambridge, MA, USA.
Lab Chip. 2011 Aug 7;11(15):2488-92. doi: 10.1039/c1lc20337a. Epub 2011 Jun 23.
We present a general inexpensive method for realizing a Teflon stack microreactor with an integrated piezoelectric actuator for conducting chemical synthesis with solid products. The microreactors are demonstrated with palladium-catalyzed C-N cross-coupling reactions, which are prone to clogging microchannels by forming insoluble salts as by-products. Investigations of the ultrasonic waveform applied by the piezoelectric actuator reveal an optimal value of 50 kHz at a load power of 30 W. Operating the system at these conditions, the newly developed Teflon microreactor handles the insoluble solids formed and no clogging is observed. The investigated reactions reach full conversion in very short reaction times and high isolated yields are obtained (>95% yield).
我们提出了一种通用的、廉价的方法,用于实现带有集成压电执行器的聚四氟乙烯(Teflon)堆叠微反应器,以进行带有固体产物的化学合成。该微反应器通过钯催化的 C-N 交叉偶联反应进行了演示,该反应容易因形成不溶性盐作为副产物而堵塞微通道。对压电执行器施加的超声波形的研究表明,在负载功率为 30 W 时,50 kHz 为最佳值。在这些条件下运行该系统时,新开发的 Teflon 微反应器能够处理形成的不溶性固体,并且没有观察到堵塞。所研究的反应在非常短的反应时间内达到完全转化,并且获得了高的分离产率(>95%的产率)。