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Z290807

Sigma-Aldrich

Nylon filter membranes

pore size 0.22 μm, diam. 47 mm, pack of 100

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NACRES:
NB.24

material

Nylon membrane

sterility

non-sterile

packaging

pack of 100

diam.

47 mm

thickness

60-125 μm

pore size

0.22 μm

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This Item
Z290793Z290823Z290785
Sigma-Aldrich

Z290807

Nylon filter membranes

Sigma-Aldrich

Z290793

Nylon filter membranes

Sigma-Aldrich

Z290823

Nylon filter membranes

Sigma-Aldrich

Z290785

Nylon filter membranes

pore size

0.22 μm

pore size

0.45 μm

pore size

0.2 μm

pore size

0.45 μm

diam.

47 mm

diam.

47 mm

diam.

25 mm

diam.

90 mm

sterility

non-sterile

sterility

non-sterile

sterility

non-sterile

sterility

non-sterile

packaging

pack of 100

packaging

pack of 100

packaging

-

packaging

-

thickness

60-125 μm

thickness

60-125 μm

thickness

60-125 μm

thickness

60-125 μm

General description

Nylon filters are naturally hydrophilic and no wetting agents are used in manufacture.

With an extractable level <0.0015 mg/cm2, they are ideal for HPLC solvent and sample preparation. Because of high non-specific binding, they are not recommended for protein solutions.

Application

Nylon filter membranes have been used:

  • duringthe preparation of phosphate buffer saline (PBS)
  • in the filtration ofraspberry fruit powder extract for liquid chromatography (LC)/tandem massspectrometry (MS/MS) analysis
  • as a polymeric membrane to study itsinteraction with nanoparticles

Features and Benefits

  • Compatible with aqueous and most organic solvents
  • Autoclave friendly
  • It can withstand temperatures up to 180°C

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25G
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Functionalized nanoparticle interactions with polymeric membranes
Ladner D A, et al.
Journal of Hazardous Materials, 211-212, 88-295 (2012)
Alterations of phenolic compounds in red raspberry juice induced by high-hydrostatic-pressure and high-temperature short-time processing
Wentao Z, et al.
Innovative Food Science & Emerging Technologies, 67, 102569-102569 (2021)
Francesco Canfarotta et al.
Nature protocols, 11(3), 443-455 (2016-02-13)
Molecularly imprinted polymers (MIPs) are synthetic materials, generally based on acrylic or methacrylic monomers, that are polymerized in the presence of a specific target molecule called the 'template' and capable of rebinding selectively to this target molecule. They have the

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