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Selective Functionalization of Independently Addressed Microelectrodes by Electrochemical Activation and Deactivation of a Coupling Catalyst

机译:通过偶合催化剂的电化学活化和失活对独立寻址的微电极进行选择性功能化

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摘要

We demonstrate selective functionalization of independently addressed microelectrodes by electrochemical activation and deactivation of a coupling catalyst. 1,2,3-Triazole formation between terminal acetylenes and organic azides is efficiently catalyzed by copper(I) complexes (a Sharpless “click” reaction) while the oxidized copper (II) complexes are inactive. By electrochemically activating or deactivating the catalyst by switching its redox state, we demonstrate control over triazole formation between surface-immobilized azides and ethynylferrocene. The reaction proceeds on the timescale of minutes using sub-micromolar concentration of reactants and catalyst, requires mild potentials for catalyst activation and deactivation, and works in aqueous and mixed aqueous-organic solvents. By appropriate biasing of each electrode, we selectively modify one of two chemically identical 10-μm-wide electrodes separated by 10 μm in an interdigitated array. The ability to switch on or off the reaction by electrical addressing together with the chemoselectivity of this reaction makes Cu(I)-catalyzed triazole formation an ideal method for the chemical modification of multielectrode arrays.
机译:我们通过电化学激活和偶联催化剂的失活证明了独立寻址的微电极的选择性功能化。铜(I)配合物(Sharpless“点击”反应)可有效催化末端乙炔与有机叠氮化物之间的1,2,3-三唑形成,而氧化的铜(II)配合物则无活性。通过切换其氧化还原状态电化学活化或失活催化剂,我们证明了表面固定的叠氮化物和乙炔基二茂铁之间三唑形成的控制。使用亚微摩尔浓度的反应物和催化剂,反应可在数分钟的时间内进行,需要适度的电势来活化和失活催化剂,并且可以在水性和混合的水性有机溶剂中工作。通过适当偏置每个电极,我们可以选择性地修改两个相互交叉的阵列中相隔10μm的化学上相同的10μm宽的电极之一。通过电寻址打开或关闭反应的能力以及该反应的化学选择性,使Cu(I)催化的三唑形成成为多电极阵列化学修饰的理想方法。

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