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Janus colloid surfactant catalysts for in situ organic reactions in Pickering emulsion microreactors

机译:Janus胶体表面活性剂催化剂在泡沫乳液微反应器中原位有机反应

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摘要

This study introduces a Janus colloid surfactant catalyst platform exhibiting remarkable catalytic activity and magnetic responsiveness in Pickering emulsion microreactors. The patching of catalytic nanoparticles (NPs) such as Pd NPs and Ag NPs on amphiphilic Janus microparticles (JMPs) permits the control of catalytic activity for the organic reactions occurring in emulsion droplets. Through model organic reactions including oxidation, amination, and reduction, we show that the JMP catalysts assemble at the reactantwater interface of Pickering emulsions and play an essential role in enhancing the reaction kinetics and product yields. Moreover, when Fe2O3 NPs were co-patched site specifically, the Pickering emulsion droplets showed magnetic responsiveness, thus leading to facile recovery of products and effective recycling of JMP catalysts. The colloid surfactant catalysts developed in our study are expected to advance the environment-friendly catalyst system for green chemistry.
机译:本研究介绍了Janus胶体表面活性剂催化剂催化剂平台,其呈现出显着的催化活性和在皮克林乳液微反应器中的磁反应性。 催化纳米颗粒(NPS)的贴剂如Pd NPS和Ag NPS上的两亲的Janus微粒(JMP)允许对乳液液滴中发生的有机反应进行控制。 通过模型有机反应,包括氧化,胺化和还原,我们表明JMP催化剂在皮克林乳液的反应水界面上组装,并在提高反应动力学和产物产率方面发挥重要作用。 此外,当Fe2O3 NPS特别是共贴的网站时,皮克林乳液液滴显示出磁反应性,从而促进了产品的复苏和JMP催化剂的有效回收。 预计我们研究中开发的胶体表面活性剂催化剂将推进绿色化学的环保型催化剂体系。

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