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Thermo Scientific™ PVDF Transfer Membranes, 0.45 μm

Pierce PVDF Transfer Membranes are made of high-quality polyvinylidene difluoride and provide high binding capacity for proteins and nucleic acids for western, Southern, and northern blotting methods.

202.00 € - 477.00 €

Specifications

Material PVDF
Pore Size 0.45 μm
Content And Storage Store membranes flat at ambient temperature and away from chemical vapors. Some solvent vapors may partially dissolve the membranes, which will disrupt the pore structure.
Shipping Condition Room Temperature
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Products 2
Product Code Brand Dimensions (LxW) Format Pore Size Sufficient For Price Quantity & Availability  
Product Code Brand Dimensions (LxW) Format Pore Size Sufficient For Price Quantity & Availability  
11804131
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Thermo Scientific™
88585
10 x 10 cm Sheet 0.45 μm 10 Mini-gel Blots
202.00 €
Pack of 10
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10617354
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Thermo Scientific™
88518
3.75 m x 26.5 cm Roll 0.45 μm ≥100 Mini-gel Blots (When cut to 8.8 x 10 cm); ≥80 Midi-gel Blots (When cut to 8.5 x 13.25 cm)
477.00 €
Each
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Description

Description

Pierce PVDF Transfer Membranes are made of high-quality polyvinylidene difluoride and provide high binding capacity for proteins and nucleic acids for western, Southern, and northern blotting methods. The 0.45-μm pore size make these membranes well-suited for a wide range of western blotting conditions and ideal for transfer of proteins >10 kDa. For best results, preactivate the membrane with 100% alcohol.

Features include:
• Re-probe characteristics—high mechanical strength makes PVDF an excellent membrane for stripping and re-probing
• Durability—compatible with most organic solvents, acids, and mild bases
• Compatible with commonly used transfer conditions and detection methods such as staining, chemiluminescence, and radiolabeling
• High sensitivity—exceptional binding capacity makes PVDF the ultimate choice for low abundance proteins

Specifications

Specifications

PVDF
0.45 μm
Store membranes flat at ambient temperature and away from chemical vapors. Some solvent vapors may partially dissolve the membranes, which will disrupt the pore structure.
Room Temperature
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