SAMPHV001
Millex Samplicity® filter
PVDF membrane, pore size 0.45 μm, diam. 25 mm, non-sterile, hydrophilic
Synonym(s):
0.45 μm PVDF syringe filter, Durapore® PVDF syringe filter, Millex-HV syringe filter, disposable syringe filter, syringe filter
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About This Item
material
PVDF membrane
high-density polyethylene
sterility
non-sterile
product line
Millex™
feature
hydrophilic
manufacturer/tradename
Samplicity®
technique(s)
HPLC: suitable
diam.
25 mm
volume
1.7 mL
pore size
0.45 μm pore size
fitting
inlet funnel (Easy loading)
outlet tip (for smooth transfer to HPLC vials)
shipped in
ambient
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General description
Overview of Millex Samplicity® Filters for the Samplicity® G2 System
- Samplicity® G2 Filtration System enables vacuum driven filtation of up to 8 samples at once, directly into HPLC vials
- Filtration for HPLC sample prep without syringes
- Millex Samplicity®Filters provide integrated funnels and filters for easiest sample loading
Application
Legal Information
Certificates of Analysis (COA)
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Because of its high sensitivity and extreme versatility, mass spectrometry has become a popular technique for identifying and quantifying molecules within complex mixtures, in diverse research areas that range from systems biology and proteomics to environmental analysis. Successful mass spectrometry requires extremely areful sample preparation, in order to avoid complexity of the mixtures being analyzed. EMD Millipore supports researchers using mass spectrometry with tools or multiple steps of the workflow, including purification, clarification, and analysis.
"Liquid chromatography mass spectrometry (LC-MS) and gas chromatography mass spectrometry (GC-MS) are being increasingly used in analysis of samples, not only in the biotechnology and pharmaceutical industries, but also more generally in the analysis, identification and quantitation of complex samples containing low levels of analytes. The advantages of LC-MS or GC-MS over other analytical techniques include high sensitivity and specificity for analyte detection and quantitation."
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