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HPLC column NUCLEODUR ® C 8 Gravity, 1.8 µm, 150 mm, 2 mm

Order number: 341Y.1

Part number: AC100007266

£ 778.86*

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£ 934.63*

*incl. VAT, plus shipping costs
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Designed to integrate seamlessly into laboratory operations, the Hplc Column Nucleodur ® C 8 Gravity, 1.8 μm, 150 mm, 2 mm features a UHPLC column structure with fully porous particles (FPP). Its particle size of 1.8 μm ensures efficient separation while maintaining pressure stability up to 900 bar. The column's surface chemistry, base deactivated (BDS) and high density monomeric octyl (C 8 , MOS) modification, supports hydrophobic (van der Waals) interactions, making it ideal for the separation of basic and other ionizable analytes. With a recommended temperature stability of 60°C and a specific surface area of 340 m²/g according to BET, this column is an excellent choice for method development and various RP applications, including pharmaceutical

  • Category: Separation columns for HPLC
  • Pore size: 110 Å
  • Similar phases: NUCLEOSIL ® C 8 HD Xterra ® RP 8 / MS C 8 Luna ® C 8 Zorbax ® Eclipse XDB-C 8
  • Separation principle: Reversed phase (RP)
  • Specific surface according to BET: 340 m²/g
  • Recommended application(s): In general compounds with ionizable functional groups such as basic pharmaceuticals and pesticides Analgesics Antidepressants Applications for extreme pH values (1-11) Anti-inflammatory drugs Herbicides Ideal for method development Immunosuppressants Pharmaceutical products Phytopharmaceuticals
  • Interactions / retention mechanism: hydrophobic (van der Waals)
  • Column shape: Analytical separation column
  • Phase: C 8 Gravity
  • Pressure stability: 900 bar
  • Column volume: 0.45 ml
  • Particle size: 1.8 µm
  • Column type: UHPLC column
  • L x Ø internal (column): 150 x 2 mm
  • Temperature stability: 60 ° C
  • Endcapped: yes
  • USP listing: L7
  • Surface chemistry: Base deactivated (BDS), High density monomeric octyl (C 8 , MOS) modification
  • Eluent in column: Acetonitrile - Water
  • Particle type: Fully porous particles (FPP)
  • Pore volume: 0.9 ml/g
  • pH stability: 1,0-11,0