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52579-U

Supelco

Supelclean PSA SPE Tube

bed wt. 500 mg, volume 6 mL, pk of 30

NACRES:
NB.21

material

PE frit (20 μm porosity)
polypropylene hardware

Quality Level

composition

bed wt., 500 mg

packaging

pk of 30

extent of labeling

8.4% C loading
3.3% N loading

technique(s)

solid phase extraction (SPE): suitable

surface area

500 m2/g

volume

6 mL

surface coverage

surface coverage 2.35 μmol/m2

matrix

silica gel base material (irregularly shaped)

matrix active group

ethylenediamine-N-propy bonding, polymerically bonded

particle size

50 μm

pore size

70 Å pore size

pKa 

(1) 10.1, (2) 10.9

capacity

0.98-1.05 meq/g capacity

application(s)

food and beverages

separation technique

ion exchange
normal phase

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This Item
52578-U52738-U54096-U
Supelclean™ PSA SPE Tube bed wt. 500 mg, volume 6 mL, pk of 30

Supelco

52579-U

Supelclean PSA SPE Tube

Supelclean™ PSA SPE Tube bed wt. 200 mg, volume 3 mL, pk of 54

Supelco

52578-U

Supelclean PSA SPE Tube

composition

bed wt., 500 mg

composition

bed wt., 200 mg

composition

-

composition

bed A, 500 mg (Supelclean ENVI-Carb), bed B, 500 mg (Supelclean LC-NH2)

packaging

pk of 30

packaging

pk of 54

packaging

pkg of 100 g

packaging

pk of 200

extent of labeling

8.4% C loading, 3.3% N loading

extent of labeling

8.4% C loading, 3.3% N loading

extent of labeling

8.4% C, 3.3% N loading

extent of labeling

-

surface area

500 m2/g

surface area

500 m2/g

surface area

500 m2/g

surface area

-

volume

6 mL

volume

3 mL

volume

-

volume

20 mL

General description

Retention Mechanism: Normal-phase and anion-exchange
Sample Matrix Compatibility: Organic or aqueous solutions

  • Polymerically bonded, ethylenediamine-N-propyl phase that contains both primary and secondary amines
  • A weak anion exchanger with a pKa of 10.1 and 10.9
  • Similar to aminopropyl SPE phases (NH2) in terms of selectivity, but has a much higher capacity due to presence of secondary amine (0.98-1.05 meq/g)
  • Strong affinity and high capacity for removing fatty acids, organic acids, and some polar pigments and sugars when conducting multi-residue pesticide analysis in foods
  • Has been shown to significantly reduce matrix-enhancement effects encountered during the GC analysis of food products
  • Tested for superior cleanliness using GC-FID and GC-MS
  • Bidentate nature of ligand allows for chelation

Legal Information

Supelclean is a trademark of Sigma-Aldrich Co. LLC

Pictograms

CorrosionExclamation mark

Signal Word

Danger

Hazard Statements

Hazard Classifications

Eye Dam. 1 - Skin Sens. 1

Storage Class Code

13 - Non Combustible Solids

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


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1000309185

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Protocols

Solid Phase Extraction: Normal Phase Methodology

Retention occurs through polar interaction between the sorbent and analytes. Typical sample matrices that can be employed in normal-phase SPE include hydrocarbon or fatty oils diluted in a solvent like hexane, isooctane, chlorinated solvent, THF, diethyl ether, or ethyl acetate.

Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.

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