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COLUMN USER GUIDE for Agilent InfinityLab Poroshell Chiral Columns

Guides | 2019 | Agilent TechnologiesInstrumentation
Consumables, LC columns
Industries
Manufacturer
Agilent Technologies

Summary

Significance of Chiral Poroshell Columns


Chiral separations play a critical role in fields such as pharmaceutical analysis, food safety, and environmental monitoring. The ability to resolve enantiomers ensures accurate characterization of bioactive compounds, regulatory compliance, and enhanced method reliability. Agilent InfinityLab Poroshell 120 Chiral columns combine high efficiency with robust performance, offering fast and reproducible enantiomeric analyses.

Objectives and Overview


This guide details the key features, operational parameters, and best practices for using Agilent Poroshell 120 Chiral columns. It covers column installation, conditioning, recommended mobile phases, method development strategies, and maintenance procedures to ensure optimal column performance and lifetime.

Methodology and Used Instrumentation


The Agilent InfinityLab Poroshell 120 Chiral columns employ covalently bonded chiral selectors (teicoplanin, vancomycin, hydroxypropyl-β-cyclodextrin, cyclofructan CF6) on 2.7 µm superficially porous silica particles. The following components are recommended:
  • InfinityLab Quick Connect & Quick Turn fittings for zero-dead-volume connections
  • High-purity, degassed, and filtered solvents (methanol, acetonitrile, water, buffers)
  • Configured LC system matched to QC performance reports (minimized extra-column volume)

Columns are conditioned by flushing 10–20 column volumes of the target mobile phase at appropriate flow rates to ensure equilibration before analysis.

Main Results and Discussion


Operational parameters for the Poroshell 120 Chiral family include:
  • Recommended pH 2.5–7 (teicoplanin, vancomycin) or 3–7 (cyclodextrins), maximum temperature 45 °C
  • Maximum operating pressure of 400 bar (6,000 psi)

Screening mobile phases for isocratic runs span polar ionic, polar organic, reversed-phase, and normal-phase modes. Method optimization is achieved by adjusting organic/buffer ratios, solvent types, salt concentrations, and pH for ionizable analytes. Supercritical fluid chromatography (SFC) compatibility extends the application range, with similar equilibration and storage considerations.

Benefits and Practical Applications


The Poroshell 120 Chiral columns offer high throughput and sharp peak shapes due to minimized extra-column volume and fast data acquisition rates. They provide robust enantiomeric resolution for quality control, method development, and routine analysis in pharmaceutical, food, and chemical industries.

Future Trends and Possibilities


The evolution of chiral stationary phases will focus on novel selectors, enhanced SFC methods, and integration with automated method development platforms. Future directions include greener solvents, miniaturized capillary LC, and AI-driven optimization to streamline chiral separations and reduce solvent consumption.

Conclusion


Agilent Poroshell 120 Chiral columns deliver reliable, high-efficiency enantiomer separations when operated within specified pH, temperature, and pressure ranges. Proper connector use, conditioning, and maintenance practices extend column life and ensure consistent analytical performance across diverse applications.

References


No references provided.

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