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HPLC column NUCLEODUR ® C 18 ec, 5 µm, 110 Å, 150 mm, 4 mm

£ 377.33*

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£ 452.80*

*incl. VAT, plus shipping costs

HPLC column NUCLEODUR ® C 18 ec, 5 µm, 110 Å, 150 mm, 4 mm

Order number: 35KC.1

Part number: AC100008965

In Stock

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Engineered for consistent performance, this HPLC column Nucleodur® C 18 ec is an ideal choice for routine analyses and upscaling for preparative HPLC. With its medium density monomeric octadecyl (C 18, ODS) modification, it offers a wide range of applications, including the separation of basic, neutral, or acidic drugs, derivatized amino acids, pesticides, fat-soluble vitamins, aldehydes, and ketones, as well as phenolic compounds. This fully porous particle (FPP) column features a particle size of 5 μm, a pore size of 110 Å, and a specific surface area of 340 m²/g, ensuring efficient separations. It also boasts a pressure stability of 600 bar and a temperature stability of 60°

  • Category: Separation columns for HPLC
  • Phase: C 18 ec
  • Column type: HPLC column
  • pH stability: 1,0-9,0
  • Particle type: Fully porous particles (FPP)
  • Column shape: Analytical separation column
  • Temperature stability: 60 ° C
  • USP listing: L1
  • Particle size: 5 µm
  • Pore size: 110 Å
  • Endcapped: yes
  • Specific surface according to BET: 340 m²/g
  • Pore volume: 0.9 ml/g
  • L x Ø internal (column): 150 x 4 mm
  • Column volume: 1.9 ml
  • Surface chemistry: Medium density monomeric octadecyl (C 18 , ODS) modification
  • Recommended application(s): Routine analyses Aldehydes Basic, neutral or acidic drugs Derivatised amino acids Fat-soluble vitamins Ketones Pesticides Phenolic compounds
  • Application Database (Macherey-Nagel): HPLC
  • Separation principle: Reversed phase (RP)
  • Similar phases: NUCLEOSIL ® C 18 Spherisorb ® ODS II Symmetry ® C 18 Hypersil™ ODS Inertsil ® ODS II Kromasil ® C 18 LiChrospher ® RP 18
  • Pressure stability: 600 bar
  • Eluent in column: Acetonitrile - Water
  • Interactions / retention mechanism: hydrophobic (van der Waals interactions), some residual silanol interactions

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