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October 9, 20251 citationsOpen Access

How to prepare an ultramicroelectrode with a precise geometry

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TDTimothy J. DowellMississippi State UniversityJHJayamini HewageThe Ohio State UniversityDWDavid O. WipfMississippi State University

Key Points

  • This method enables quick production of ultramicroelectrodes with micron-sized precision, enhancing efficiency and accuracy.
  • The protocol allows the fabrication of various electrode types, like gold and carbon-fiber, in under 30 minutes.
  • It features a unique single-step process facilitating easy repolishing while maintaining electrode geometry.
  • Applications in scanning electrochemical microscopy benefit from the specific geometry and low sheath-to-core ratio.

Abstract

A versatile protocol for fabricating ultramicroelectrodes (UMEs) with precise geometry is presented. This new method produces highly concentric UMEs with micron-sized electroactive wires sealed in a thin borosilicate sheath. The method also permits easy repolishing without significantly changing the electrode dimensions. Furthermore, the simple, single-step pulling process—providing simultaneous micro-wire sealing and capillary-thinning—avoids additional sealing and tip-sharpening steps of traditional fabrication methods, which require fastidious hands-on fabrication and have low reproducibility/success-rates. Diverse types of electrodes (i.e., gold, carbon-fiber, and platinum) can be fabricated by this new method in a short time (≤30 min) while requiring little training or prior knowledge in UME fabrication. In addition, we describe the assembly and operation of 3D-printed custom polishing and beveling apparatuses; that can rapidly (≈2 min) and impeccably polish and bevel the newly designed UMEs into various final UME geometries (i.e., disk, beveled, and double-beveled); a critical issue often overlooked in UME preparation literature. The characteristically small ratio of the insulating sheath to the electroactive core (RG ≤ 3) of prepared disk UMEs is highly desirable for applications in scanning electrochemical microscopy (SECM). Similarly, these features are maintained when beveled or dual-bevel chisel-tip UMEs are prepared, which are highly desirable features for UMEs employed in intracellular recordings. The straightforward fabrication method described here is readily extended to other electroactive cores and micropipettes, allowing even novices to produce high quality probes for various applications. Keywords: Ultramicroelectrode, disk, beveled electrode, chisel-tip electrode, scanning electrochemical microscopy, electrochemistry, 3D printing.

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Cite This Study

Dowell et al. (2025) studied this question.

synapsesocial.com/papers/68e7d631bd66d359be626877https://doi.org/10.26434/chemrxiv-2025-rgkhg
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