Walsh Darren A, Fernández José L, Mauzeroll Janine, Bard Allen J
Department of Chemistry and Biochemistry, University of Texas at Austin, Austin, TX 78712, USA.
Anal Chem. 2005 Aug 15;77(16):5182-8. doi: 10.1021/ac0505122.
The fabrication and characterization of novel micropipet probes for use in scanning electrochemical microscopy (SECM) are described. These can be used to dispense small (pL) amounts of a solution while monitoring the electrochemical response at a substrate and at a ring electrode tip on the micropipet probe. The probes were constructed by insulating gold-coated borosilicate micropipets with electrophoretic paint and exposing a ring electrode at the tip by heat treatment. Characterization of the probes was performed using scanning electron microscopy, cyclic voltammetry, and SECM approach curve experiments. Routine construction of tips with diameters of the order of 3 microm was possible using this technique. The probes exhibited stable steady-state currents and positive and negative feedback approach curves that agreed with those predicted by theory. Demonstrative SECM imaging experiments were performed using a picodispenser to continuously dispense an electroactive solution (ferrocenemethanol) to the SECM cell while the probe was located within a few micrometers of a Pt substrate surface. Oxidation of the dispensed electroactive solution was performed at the substrate, and feedback currents were measured at the probe tip by holding the gold ring at a reducing potential. This mode of tip-dispensing SECM was used to obtain images of a platinum substrate electrode while monitoring both the substrate current and the feedback current at the probe.
本文描述了用于扫描电化学显微镜(SECM)的新型微吸管探针的制备及表征。这些探针可用于微量(皮升)溶液的分配,同时监测基底以及微吸管探针上环形电极尖端处的电化学响应。通过用电泳漆绝缘涂金的硼硅酸盐微吸管,并通过热处理使尖端露出环形电极来构建探针。使用扫描电子显微镜、循环伏安法和SECM方法曲线实验对探针进行表征。使用该技术可以常规构建直径约为3微米的尖端。探针表现出稳定的稳态电流以及与理论预测相符的正负反馈方法曲线。使用皮升分配器向SECM池连续分配电活性溶液(二茂铁甲醇)进行示范性SECM成像实验,此时探针位于距铂基底表面几微米处。在基底上对分配的电活性溶液进行氧化,并通过将金环保持在还原电位来测量探针尖端处的反馈电流。这种尖端分配SECM模式用于获取铂基底电极的图像,同时监测基底电流和探针处的反馈电流。