microfluidic ChipShop
Field-flow fractionation chip Fluidic 159Product Results will show here!
Support by a team of engineers & PhDs
Support by a team of engineers & PhDs
Support by a team of engineers & PhDs
Whereas standard ChipShop connectors only accept soft-walled tubing, this set of connectors allows connecting any 1/16" OD rigid tubing to a ChipShop chip.
Suitable for rigid tubing (PTFE, PEEK, etc.) with an OD of 1/16" (1.6 mm). Manufactured in blue TPE, max. pressure of 3.2 bar with a 1/16" OD PEEK tubing.
Plugs to block unused ports are also available in our shop.
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The field-flow fractionation chip Fluidic 120 features olive interfaces and field-flow fractionation structure. The chip was developed within the BMBF-Project “Free-Flow-Chip”, FKZ 01RI0643D, and can be used to establish a miniaturized free-flow electrophoresis (FFE). In free-flow electrophoresis, charged analytes entering the separation bed are deflected to the side by the electric field applied at right angles to the direction of flow, causing anions to migrate to the anode (positive pole) and cations to the cathode (negative pole). The combination of laminar flow and electrophoretic migration at a 90° angle to it forms a deflection angle, which depends on the electrophoretic mobility of the analyte in question and the applied flow rates and field strengths. Please note: This product only contains the plastic chip as platform to establish your experiment. It does not contain electrodes. For more information on miniaturized free-flow electrophoresis using this chip, check out our publication: S. Köhler et al. RSC Adv., 2012,2, 520-525 [https://pubs.rsc.org/en/content/articlelanding/2012/ra/c1ra00874a#!divAbstract].
This field-flow fractionation chip provides a dedicated solution for researchers aiming to establish free-flow electrophoresis on a miniaturized scale. The design gives maximum transparency into the setup process, ensuring accurate positioning and monitoring of the separation workflow. With support for different plastic materials and surface treatments, users can optimize experimental conditions for a broad range of analytes and applications.
By offering olive connector interfaces, the chip supports standard laboratory fittings, making it easy to incorporate into existing experimental systems. The chamber-based approach is optimized for controlled experiments requiring reliable electrophoretic separation. This chip is engineered for precise laboratory applications where flexibility in material and wettability is required.
The Field-flow fractionation chip is ideal for laboratory experiments involving miniaturized free-flow electrophoresis setups, separation of charged particles, protocol development, and chemical analysis where controlled fractionation is required.
1x Field-flow fractionation chip
| SKU | CS-10000333 | CS-10000954 | CS-10000408 | CS-10000334 |
|---|---|---|---|---|
| Design element | Chamber | Chamber | Chamber | Chamber |
| Material | PC | PC | Zeonor | Zeonor |
| Material chip body | mcs-PC 13 | mcs-PC 13 | mcs-COP 02 | mcs-COP 02 |
| Material chip lid | mcs-foil 042 (PC; 175 µm; Tg 145°C) | mcs-foil 042 (PC; 175 µm; Tg 145°C) | mcs-foil 005 (Zeonor; 188 µm; Tg 136°C) | mcs-foil 005 (Zeonor; 188 µm; Tg 136°C) |
| Color | Transparent | Transparent | Transparent | Transparent |
| Interface type | Olives | Olives | Olives | Olives |
| Surface treatment | Not treated | Hydrophilized | Hydrophilized | Not treated |
| Membrane | no membrane | no membrane | no membrane | no membrane |
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