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This is a cross-shaped channel chip with extended size platform I with electrodes (non-contact mode) and a Luer fluidic interface. This variation of the cross-shaped channel chips includes electrodes that can be used for the detection of charged molecules, for example. The material of the electrodes is 10 nm titanium and 100−150 nm gold. The electrodes are placed on the cover lid and assembled towards the atmosphere, resulting in electrode and the liquid to be analyzed having no contact. The use of these chips with this electrode arrangement requires a special instrumentation set-up. This detection technology is called C4D (capacitively coupled contactless conductivity detection).
Cross-shaped channel chip - 200 μm channel, Fluidic 394, polymethyl methacrylate (PMMA) with Luer Interface
Cross-shaped channel chip - 200 μm channel, Fluidic 394, polymethyl methacrylate (PMMA) with Luer Interface
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Lab on a chip, 17(11), 1856-1883 (2017-05-10)
The microfluidic technique has brought unique opportunities toward the full control over the production processes for drug delivery carriers, owing to the miniaturisation of the fluidic environment. In comparison to the conventional batch methods, the microfluidic setup provides a range
Advanced drug delivery reviews, 128, 3-28 (2017-09-19)
Conventional systematically-administered drugs distribute evenly throughout the body, get degraded and excreted rapidly while crossing many biological barriers, leaving minimum amounts of the drugs at pathological sites. Controlled drug delivery aims to deliver drugs to the target sites at desired
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