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Accelerating Electrochemical Reactions in a Voltage-Controlled Interfacial Microreactor
Authors:Dr. Heyong Cheng  Shuli Tang  Tingyuan Yang  Prof. Shiqing Xu  Prof. Xin Yan
Affiliation:1. Department of Chemistry, Texas A&M University, 580 Ross Street, College Station, TX, 77845 USA

College of Material Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, 311121 China;2. Department of Chemistry, Texas A&M University, 580 Ross Street, College Station, TX, 77845 USA

Abstract:Microdroplet chemistry is attracting increasing attention for accelerated reactions at the solution–air interface. We report herein a voltage-controlled interfacial microreactor that enables acceleration of electrochemical reactions which are not observed in bulk or conventional electrochemical cells. The microreactor is formed at the interface of the Taylor cone in an electrospray emitter with a large orifice, thus allowing continuous contact of the electrode and the reactants at/near the interface. As a proof-of-concept, electrooxidative C−H/N−H coupling and electrooxidation of benzyl alcohol were shown to be accelerated by more than an order of magnitude as compared to the corresponding bulk reactions. The new electrochemical microreactor has unique features that allow i) voltage-controlled acceleration of electrochemical reactions by voltage-dependent formation of the interfacial microreactor; ii) “reversible” electrochemical derivatization; and iii) in situ mechanistic study and capture of key radical intermediates when coupled with mass spectrometry.
Keywords:electrochemistry  electrospray techniques  interfacial microreactors  mass spectrometry  reaction acceleration
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