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Lately, Natasha et al. (2018) developed an online monitoring system which consisted of a microdialysis probe (as a tool to sample the fluid adjacent to magnesium implant) and a fabric-based electrochemical device (FED) (as a catalytic biosensor specific to Mg2+), both of which were connected to a potentiostat (Fig. 6b).
Since the material and fabrication process employed in constructing the aforementioned SL sensors were relatively expensive, complicated, and inappropriate for applications in the developing world, our group [ 45] developed a cotton fabric-based electrochemical device (FED) based on carbon modified with PB (C-PB) electrodes and LOx enzyme for SL measurement.
Design: Biofilm cells were grown on the surface of glass beads in a biofilm device fed with mucin-containing artificial saliva.
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We demonstrate tunable field effect properties in solid state and flexible graphene field effect devices (FEDs) fabricated using a poly methylmethacrylate) (PMMA) and lithium fluoride (LiF) composite dielectric.
The device features a FED screen (size: 288×43.2mm) with 640×96 pixel resolution to display information retrieved from the Internet over Wi-Fi (OS: WindowsXP Embedded).
This was the deer chaser, an elegant water-fed device that, in its ancestral usage, was intended to scare the animals away from a garden's delectable moss.
These proteins could be fractionated in about 10 membrane bed volumes using the laterally-fed device as opposed to 25 bed volumes with the radial-flow device.
The laterally-fed device showed superior flow distribution characteristics, which could be attributed to a lower variability in solute-flow path-lengths, and a smaller dead volume.
Single protein bind-and-elute experiments carried out using lysozyme showed that the peaks obtained with the laterally-fed device were significantly sharper and more symmetrical.
The design of the laterally-fed device is simple and its flat shape gives it significantly lower footprint and offers additional advantages such as stackability and ease of multiplexing.
We discuss a laterally-fed membrane chromatography device, suitable for high-resolution, multi-component protein separation in the bind-and-elute mode.
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