Electrokinetic Spacer

An electrokinetic spacer is an intentionally introduced ionic zone that separates charged sample components during an electrically driven chemical separation. Under an applied electric field, the spacer migrates according to its electrophoretic mobility and alters the local transport environment, helping maintain distinct boundaries between neighboring analyte zones. In capillary electrophoresis and related electrokinetic methods, this strategy can reduce band overlap, improve resolution, and support more reliable zone identification. Electrokinetic spacers are therefore useful for controlling migration behavior and optimizing the separation of closely related ions, molecules, or other charged chemical species.

Electrokinetic Spacer - Related Videos

Research

JoVE Journal - Biology

AC Electrokinetic Phenomena Generated by Microelectrode Structures

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Cited by 3 •

2008

Manipulating fluids and suspended particles in the micro- and nano-scale is becoming more of a reality as enabling technologies, like AC electrokinetics, continue to develop. Here, we discuss the physics behind AC electrokinetics, how to fabricate these devices and how to interpret the experimental observations.

Preparation of Janus Particles and Alternating Current Electrokinetic Measurements with a Rapidly Fabricated Indium Tin Oxide Electrode Array

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Cited by 2 •

2017

In this article, a simple method to prepare partially or fully coated metallic particles and to perform AC electrokinetic property measurements with a rapidly fabricated indium tin oxide (ITO) electrode array is demonstrated.

Genotyping of Staphylococcus aureus by Ribosomal Spacer PCR (RS-PCR)

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Cited by 9 •

2016

Here, ribosomal spacer PCR (RS-PCR) is used together with a miniaturized electrophoresis system as a fast and high resolution method for genotyping S. aureus at moderate costs allowing a high throughput.

Creating Sub-50 Nm Nanofluidic Junctions in PDMS Microfluidic Chip via Self-Assembly Process of Colloidal Particles

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Cited by 1 •

2016

We propose a simple self-assembly technique of silica colloidal nanoparticles to create a nanofluidic junction between two microchannels in polydimethylsiloxane (PDMS). Using this technique, a nanoporous bead membrane with a pore size down to ~45 nm was built inside a microchannel and applied to electrokinetic preconcentration of DNA samples.

Capillary Electrophoresis: A Technique to Analyze Fluorescently Labeled Polymerase Chain Reaction Amplicons

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2025

This video describes the technique of capillary electrophoresis to analyze fluorescently labeled PCR amplicons obtained from various samples based on their size. It generates a migratory pattern that determines the fragments’ base-pair lengths with the help of the labeled fluorescent dye in each fragment.

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