Rapid prototyping of electrochemical lateral flow devices: stencilled electrodes

A straightforward and very cost effective method is proposed to prototype electrodes using pressure sensitive adhesives (PSA) and a simple cutting technique. Two cutting methods, namely blade cutting and CO2 laser ablation, are compared and their respective merits are discussed. The proposed method...

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Veröffentlicht in:Analyst (London) 2016-04, Vol.141 (8), p.2515-2522
Hauptverfasser: Aller Pellitero, Miguel, Kitsara, Maria, Eibensteiner, Friedrich, del Campo, F Javier
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container_issue 8
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container_title Analyst (London)
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creator Aller Pellitero, Miguel
Kitsara, Maria
Eibensteiner, Friedrich
del Campo, F Javier
description A straightforward and very cost effective method is proposed to prototype electrodes using pressure sensitive adhesives (PSA) and a simple cutting technique. Two cutting methods, namely blade cutting and CO2 laser ablation, are compared and their respective merits are discussed. The proposed method consists of turning the protective liner on the adhesive into a stencil to apply screen-printing pastes. After the electrodes have been printed, the liner is removed and the PSA can be used as a backing material for standard lateral flow membranes. We present the fabrication of band electrodes down to 250 μm wide, and their characterization using microscopy techniques and cyclic voltammetry. The prototyping approach presented here facilitates the development of new electrochemical devices even if very limited fabrication resources are available. Here we demonstrate the fabrication of a simple lateral-flow device capable of determining glucose in blood. The prototyping approach presented here is highly suitable for the development of novel electroanalytical tools.
doi_str_mv 10.1039/c5an02424b
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source Royal Society Of Chemistry Journals; Royal Society of Chemistry Journals Archive (1841-2007); Alma/SFX Local Collection
subjects Ablation
Carbon dioxide lasers
Cutting
Devices
Electrodes
Liners
Protective
Prototyping
title Rapid prototyping of electrochemical lateral flow devices: stencilled electrodes
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