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首页> 外文期刊>Ultrasonics sonochemistry >An emerging reactor technology for chemical synthesis: Surface acoustic wave-assisted closed-vessel Suzuki coupling reactions
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An emerging reactor technology for chemical synthesis: Surface acoustic wave-assisted closed-vessel Suzuki coupling reactions

机译:用于化学合成的新兴反应器技术:表面声波辅助的密闭容器Suzuki偶联反应

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摘要

In this paper we demonstrate the use of an energy-efficient surface acoustic wave (SAW) device for driving closed-vessel SAW-assisted (CVSAW), ligand-free Suzuki couplings in aqueous media. The reactions were carried out on a mmolar scale with low to ultra-low catalyst loadings. The reactions were driven by heating resulting from the penetration of acoustic energy derived from RF Raleigh waves generated by a piezoelectric chip via a renewable fluid coupling layer. The yields were uniformly high and the reactions could be executed without added ligand and in water. In terms of energy density this new technology was determined to be roughly as efficient as microwaves and superior to ultrasound.
机译:在本文中,我们演示了在水介质中使用节能表面声波(SAW)设备来驱动封闭容器SAW辅助(CVSAW),无配体的Suzuki偶联。反应以低至超低催化剂负载量的毫摩尔规模进行。反应是通过加热产生的,该加热是由压电芯片通过可再生流体耦合层渗透射频罗利波产生的声能而产生的。产率均匀地高,并且可以在不添加配体的情况下和在水中进行反应。在能量密度方面,该新技术被确定为与微波大致相同的效率,并且优于超声。

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