Consumables
Dxfluidics provides all kinds of consumables for microfluidic experiments, photoresists/developers, prepolymers, connectors, catheters, prepolymers, and so on.
Dxfluidics provides all kinds of consumables for microfluidic experiments, photoresists/developers, prepolymers, connectors, catheters, prepolymers, and so on.
Fluorine oil, as a perfluoroalkane compound, is widely used as the continuous phase of water-in-oil droplets because of its low viscosity, high boiling point and good biocompatibility. What's more, according to the principle of similar solubility, fluorine oil is immiscible with hydrocarbon alkyl compounds, so fluorine oil, as a continuous phase, can be used to prepare not only fluorine oil-in-water droplets, but also fluorine oil-in-acetonitrile, fluorine oil-in-DMF, fluorine oil-in-methanol and other droplets, and at the same time, because the contents of the droplets are insoluble in the fluorine oil, so it can realize almost 100% encapsulation efficiency for the contents of the droplets.
Silicon wafers play an indispensable role in microfluidic chip manufacturing and can be used to prepare SU8 molds, silicon molds, and silicon runner chips. SU-8 Mold Silicon wafers are widely used in SU-8 mold preparation.
Microfluidic chips utilize micromachining techniques to machine tiny channels and microstructures on micron-scale material surfaces to enable microfluidic control and manipulation.
SU-8 Photoresist SU-8 photoresist is a high-resolution, high-precision, high-adhesion negative photoresist that is widely used in the field of micro and nanofabrication.
Microfluidic chips are miniaturized laboratory systems for controlling and manipulating tiny liquid fluids. Among other things, the material of the chip is crucial as it can directly affect the performance and stability of the chip.
PDMS is one of the commonly used materials in microfluidic chip preparation, which has the advantages of good transparency, biocompatibility, flexibility and plasticity, and chemical resistance, providing convenience and possibility for microfluidic chip research.
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