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HPLC column NUCLEODUR ® C 18 Gravity SB, 5 µm, 125 mm, 2 mm

£ 619.20*

*Prices plus VAT plus shipping costs

£ 743.04*

*incl. VAT, plus shipping costs

HPLC column NUCLEODUR ® C 18 Gravity SB, 5 µm, 125 mm, 2 mm

Order number: 3408.1

Part number: AC100007021

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Engineered to maintain reliability in process-driven workflows, our Separation columns for HPLC, such as the Hplc Column Nucleodur ® C 18 Gravity Sb, 5 μm, 125 Mm, 2 Mm, are designed for overall sophisticated analytical separations, especially for polar compounds. Made of high purity NUCLEODUR ® silica gel, this UHPLC phase shows excellent performance under highly aqueous conditions, making it ideal for water soluble vitamins and antibiotics. With a specific surface area of 340 m²/g, this fully porous particle (FPP) column offers a large active surface for efficient separations. Its hydrophobic (van der Waals) interaction with additional polar interactions ensures versatile retention mechanisms for various applications.

  • Category: Separation columns for HPLC
  • Eluent in column: Acetonitrile - Water
  • Column type: HPLC column
  • Phase: C 18 Gravity SB
  • L x Ø internal (column): 125 x 2 mm
  • Similar phases: NUCLEOSIL ® C 18 HD Xterra ® RP 18 / MS C 18 Luna ® C 18 (2) Gemini ® Synergi™ Max RP Zorbax ® Extend C 18 Inertsil ® ODS III Purospher ® Star RP-18 Hypersil™ BDS
  • Particle size: 5 µm
  • Pore volume: 0.9 ml/g
  • Interactions / retention mechanism: hydrophobic (van der Waals) with additional polar interactions
  • Temperature stability: 60 ° C
  • USP listing: L1
  • Pressure stability: 600 bar
  • Column volume: 0.37 ml
  • Recommended application(s): Overall sophisticated analytical separations Antibiotics Organic acids Ideal for method development Especially for polar compounds Water soluble vitamins Excellent performance under highly aqueous conditions
  • Column shape: Analytical separation column
  • Pore size: 110 Å
  • Particle type: Fully porous particles (FPP)
  • Endcapped: yes
  • pH stability: 1,0-9,0
  • Specific surface according to BET: 340 m²/g
  • Surface chemistry: Base deactivated (BDS), High density octadecyl (C 18 , ODS) modification
  • Separation principle: Reversed phase (RP)

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