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Product Infomation
Product Name Glass Microfluidic Chip
Catalog Number MC-BMC-017
Physical Specs 22.5*15 mm
Description Glass chips are an important tool in microfluidic technology, utilizing glass as the manufacturing material. Compared to traditional polymer chips, glass chips offer excellent optical transparency, chemical inertness, thermal stability, and biocompatibility. These properties make glass chips widely applicable in fields such as life science research, medical diagnostics, and drug screening. The fabrication processes for glass chips are diverse; microstructures and microchannels can be precisely manufactured through methods such as microfabrication and chemical etching to integrate microfluidic systems. Their highly controllable fabrication process provides a more stable and reliable platform for experiments, while their transparency facilitates real-time observation of cells, particles, or biochemical reactions within the microfluidic system, offering an advanced and reliable solution for microfluidic technology applications.
Applications Suitable for high-precision fluid dynamics studies, electrophoretic separations and electrochemical detection, chemical synthesis and analysis in organic-solvent systems, and chemical reaction research under elevated temperature/pressure conditions. Glass substrates are especially well-suited for precision microfluidic analyses requiring UV transparency, high chemical resistance, or stringent cleanliness.
Features Its exceptional optical transparency facilitates imaging and microscopy, enabling real-time imaging and monitoring of microfluidic cell culture chambers; the manufacturing process is highly standardized and straightforward. Unlike thermoplastic materials, PDMS can be easily bonded to create seals and form enclosed channels; PDMS chips are typically fabricated by pouring a liquid premix onto a master mold. This casting process can even imprint the finest features (as small as a few micrometers) onto PDMS across a wide range of aspect ratios; PDMS is a biocompatible material, ensuring its neutrality in biological applications and making it a suitable choice for cell culture substrates; PDMS has a relatively low elastic modulus that can be easily adjusted by modifying the curing agent ratio, thereby offering a wide range of material stiffness. There are also methods to adjust the electrical and thermal properties of PDMS microfluidic chips; PDMS is a breathable material, which gives it an advantage in long-term cell culture.
Material B270 Glass
Depth 50 μm
Width 105 μm, 300 μm, 450 μm
Thickness 2+2 mm
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