missing translation for 'onlineSavingsMsg'
Learn More

Axygen™ Impermamat AxyMat™ Sealing Mat for 2mL 96 Well Deep Well Plates

Catalog No. 14222010
Change view
Click to view available options
Material:
Silicone
1 product options available for selection
Product selection table with 1 available options. Use arrow keys to navigate and Enter or Space to select.
Catalog No. Material
14222010 Silicone
Use arrow keys to navigate between rows. Press Enter or Space to select a product option. 1 options available.
1 options
Catalog No. 14222010 Supplier Axygen™ Supplier No. AM2MLRDIMP
Only null left

Chemical resistant mat minimizes evaporation in wide range of temperatures in PCR and storage applications

Axygen™ Impermamat sealing mats minimize evaporation in a wide range of temperatures in PCR and storage applications. ImpermaMats are chemically resistant, reusable sealing mats, that provide a high degree of confidence. For storage applications involving more aggressive solvents, they contain no adhesives or extractable to contaminate samples. Made of research-grade silicone, they can be autoclaved, and following a bleach wash and ethanol rinse protocol, they can also be reused.


  • Chemical resistance - can be used in any application requiring the presence of DMSO or similar solvent
  • Contains no adhesives, no extractables to contaminate samples
  • Tight seal to the plate, no sample evaporation or well-to-well contamination
  • Usable within wide temperature range from -80°C up to +121°C
  • High contrast alphanumeric grid for easy well identification
  • Compatibility: P-DW-11-C, P-DW-20-C, P-96-450R-C, P-96-450V-C
  • Specifications

    Color Natural
    Material Silicone
    Sterility Non-sterile
    Autoclavable Autoclavable
    No. of Wells 96
    No. per Case 50/Cs.
    No. per Pack 10/Pk.
    Temperature Range (English) -176°F to 250°F
    Product Type Impermamat Sealing Mat
    Temperature Range (Metric) -80°C to +121°C
    Well Shape Round
    Plate Compatibility 96-well Microplate, 2 mL
    Show More Show Less