The Cole-Parmer TELOS C18 SPE Column, Endcapped, 500 mg/3 mL (06476-88) is a reversed-phase solid phase extraction column for extracting hydrophobic and polar organic analytes from aqueous matrices. This endcapped C18 configuration combines a 500 mg sorbent bed, 3 mL capacity, 50 µm average particle size and 70 Å pore size.
Key Features
- Endcapped C18 sorbent, designed for applications requiring minimal secondary silanol interactions
- 500 mg sorbent bed, matched to this exact TELOS C18 SPE column configuration
- 3 mL total volume capacity, providing the specified column format for sample preparation
- 50 µm average particle size, as specified for this TELOS C18 sorbent
- 70 Å pore size, providing the standard pore size for this C18 configuration
- 18% carbon loading, defining the bonded C18 phase characteristics of the sorbent
- Polypropylene column construction, with a Luer-slip outlet for the specified SPE format
- 20 µm polyethylene frits, fitted at both the top and bottom of the column
- Suitable for hydrophobic and polar analytes, supporting extraction from aqueous matrices
- Pack of 50 columns, providing multiple units for routine solid phase extraction workflows
Benefits
- Extract hydrophobic and polar organic analytes from aqueous samples using a defined reversed-phase C18 sorbent.
- Minimise secondary silanol interactions when enhanced compound retention and elution are required.
- Maintain consistent method selection with defined bed mass, particle size, pore size and carbon loading.
- Integrate the polypropylene column and Luer-slip outlet into compatible SPE sample preparation workflows.
- Support routine laboratory processing with 50 SPE columns supplied per pack.
Why Choose the Cole-Parmer TELOS C18 SPE Column, Endcapped, 500 mg/3 mL (06476-88)?
The Cole-Parmer TELOS 06476-88 combines an endcapped C18 phase with a 500 mg sorbent bed, 3 mL capacity, 50 µm particles and 70 Å pores for reversed-phase solid phase extraction. John Morris Group supplies this pack of 50 for laboratories extracting hydrophobic and polar organic analytes from aqueous matrices.
