Thermo Scientific Syncronis Silica HPLC ColumnsOptimize the reproducibility of normal phase chromatographic separations using Thermo Scientific™ Syncronis™ Silica LC Columns.
Features

Thermo Scientific Syncronis Silica HPLC Columns

Optimize the reproducibility of normal phase chromatographic separations using Thermo Scientific™ Syncronis™ Silica LC Columns. Highly pure, base-deactivated, high surface area silica media ensure robust, high-resolution separations of nonpolar and moderately polar organic compounds by normal phase chromatography.

Manufactured and rigorously tested in ISO 9000 facilities, these columns are designed to meet a range of analytical needs including fast method development, quantitative analysis and quality control.

Excellent Reproducibility in Normal Phase Chromatography
  • Highest quality silica ensure consistent, predictable LC performance
  • Exceptional Column-to-Column Consistency
  • Manufactured, packed and tested in ISO-9000-accredited facilities
  • Every column individually tested to meet stringent retention, efficiency and peak symmetry specifications
  • Enhanced automated packing process
Available in Three Particle Sizes
  • 1.7μm for rapid ultrahigh-performance LC (UHPLC) separations
  • 3μm and 5μm for more traditional HPLC analysis

Specifications

  • Column type: Normal Phase
  • Max. Pressure: 5800 psi (400 bar)
  • Packing Material: Spherical, Fully Porous, Ultrapure Silica
  • Stationary phase: Silica
  • USP Type: L3
  • Surface Area: 320 m2/g
  • Temperature: 60°C
  • Phase: Normal Phase
  • Pore Size: 100 Å
  • pH: 2 to 8

Syncronis HPLC and UHPLC Columns

Enter a new world of chromatography

When developing a new method, one of the most important goals for the chromatographer is to achieve a consistent, reproducible separation. This makes selecting an HPLC column that offers highly-reproducible results essential to attaining this goal.

Features of Syncronis columns

Thermo Scientific Syncronis LC columns achieve high levels of consistency and reproducibility through:

  • Highly-pure, high-surface-area silica
  • Dense bonding and double endcapping
  • Stringent manufacturing and testing protocols