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Rxi® GC Columns - Leverage the outstanding inertness, low bleed, and high reproducibility of Rxi® 3-in-1 technology to gain

Brochures and specifications | 2015 | RestekInstrumentation
GC columns, Consumables
Industries
Manufacturer
Restek

Summary

Importance of the Topic


Gas chromatography remains a cornerstone technique for analyzing complex mixtures in fields such as environmental monitoring, petrochemicals, pharmaceuticals and food safety. The performance of a GC method critically depends on the column’s chemical inertness, low bleed and robustness. Restek’s Rxi® 3-in-1 technology leverages advanced polymer synthesis and strict quality control to deliver columns that maximize sensitivity, reproducibility and instrument uptime.

Study Objectives and Overview


This summary reviews the capabilities of the Rxi® column family, focusing on:
  • A diverse selection of stationary phase chemistries, from nonpolar to highly polar.
  • Key performance metrics: thermal stability, bleed suppression and inertness.
  • Application-specific recommendations, including one-dimensional GC, fast GC and comprehensive GC×GC.

Methodology and Instrumentation


  • Crossbond® technology ensures covalent bonding of stationary phase to fused silica for thermal and chemical stability.
  • Precise control of internal diameter and film thickness supports method transfer and consistent efficiency.
  • Rigorous testing protocols measure bleed, inertness and column-to-column reproducibility using representative analytes.
  • Orthogonal pairings of primary and secondary columns enable high-resolution two-dimensional separations (GC×GC).

Main Results and Discussion


  • Nonpolar phases (Rxi®-1ms, Rxi®-5Sil MS) exhibit ultra-low bleed and broad temperature range (–60 °C to 350 °C), improving signal-to-noise in GC-MS analyses.
  • Mid-polarity and polar phases (Rxi®-17Sil MS, Rxi® PAH, Rxi®-624Sil MS, Rxi®-1301Sil MS) deliver selective separations for PAHs, solvents, pesticides and polar organics up to 360 °C.
  • High-temperature columns (Rxi®-1HT, Rxi®-5HT) achieve up to 400 °C operation and demonstrate 40 % longer lifetimes under thermal stress.
  • Fast GC formats (0.15 mm ID) shorten analysis times by up to 2× without loss of resolution, using existing system hardware.
  • Guard and retention-gap solutions (Integra-Guard®, press-tight connectors) extend column life and simplify maintenance.

Benefits and Practical Applications


  • Enhanced trace-level detection for environmental pollutants, accelerants, residues and active compounds.
  • Method flexibility through a wide range of phase polarities and column dimensions.
  • Increased throughput via fast GC and GC×GC workflows.
  • Consistent data quality and reliable method transfer across labs thanks to tight QC standards.
  • Reduced downtime and maintenance burden through integrated guard column options.

Future Trends and Opportunities


  • Development of novel stationary phases to target emerging contaminants and complex bio-analytes.
  • Integration of AI-driven method optimization and predictive maintenance.
  • Enhanced GC×GC modulation strategies and advanced detectors for deeper sample insight.
  • Wider adoption of automation and high-throughput GC to address growing analytical demands.

Conclusion


Restek’s Rxi® 3-in-1 technology represents a comprehensive solution for modern gas chromatography challenges. By combining advanced bonded phases, rigorous quality control and versatile column formats, the Rxi platform empowers laboratories to achieve accurate, reproducible and high-throughput analyses across diverse application areas.

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