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GPC/SEC Columns

Guides | 2023 | Agilent TechnologiesInstrumentation
Consumables, LC columns, GPC/SEC
Industries
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Agilent Technologies

Summary

Importance of Topic


Gel permeation chromatography/size exclusion chromatography (GPC/SEC) is an indispensable technique for assessing molar mass, distribution, chemical composition, and architecture of synthetic polymers, biopolymers, and proteins. Accurate column selection and method optimization directly impact result reliability, reproducibility, and throughput in quality control, research and development, and industrial analytics.

Objectives and Study Overview


This eBook consolidates key Tips & Tricks from over ten years of LC/GC publications, focusing on:
  • Criteria for selecting stationary phases based on entropic separation
  • Factors influencing resolution, separation range, and performance
  • Strategies to extend molar mass range and avoid column mismatch
  • Best practices for column installation, calibration, and testing

Methodology and Instrumentation


Central concepts include:
  • An entropic-driven separation mechanism requiring non-interactive stationary phases
  • The “Magic Triangle” to balance polarities of sample, mobile phase, and stationary phase
  • Use of single-porosity versus linear/mixed-bed columns to tailor resolution and separation range
  • Combining columns in series to extend range or improve resolution
  • Calibration curve analysis and calculation of specific resolution (Rsp)
  • Routine performance checks via plate count, peak asymmetry, and mismatch tests

Instrumentation setup:
  • Standard LC system equipped with GPC/SEC columns
  • Detectors such as refractive index, light scattering, and viscometer for advanced characterization
  • Proper fittings, tubing, flow rates, and temperature control for optimal performance

Main Results and Discussion


Key findings include:
  • Suppressing enthalpic interactions by matching phase polarities and adjusting ionic strength in aqueous systems
  • Particle size, flow rate, and temperature influence mass transfer and resolution
  • Single porosity columns deliver high resolution over narrow molar mass windows, while linear columns or column sets provide broader ranges
  • Porosity mismatch generates chromatographic artifacts; rigorous testing and matched column sets are essential

Benefits and Practical Applications


Optimized GPC/SEC methods enable:
  • Accurate and reproducible molar mass analyses in QC and R&D laboratories
  • Efficient solvent and time management through appropriate column choices
  • Reliable high-throughput screening of polymeric materials and biopolymers

Future Trends and Applications


Emerging directions:
  • Development of novel stationary phase chemistries and micro- and preparative columns
  • Integration with multi-angle light scattering, viscometry, and mass spectrometry detectors
  • High-throughput and automated GPC/SEC platforms enhanced by AI for column selection and data interpretation
  • Use of greener solvents and sustainable materials in column manufacturing

Conclusion


Careful column selection based on entropic separation principles, polarity matching, and avoidance of mismatch, combined with systematic testing and calibration, underpins reliable GPC/SEC analyses across a wide range of polymeric and biopolymeric samples.

Reference


  • Pasch H.; Kilz P. Encyclopedia of Analytical Chemistry; John Wiley & Sons Ltd; 2000, pp. 7495–7543.
  • Reinhold G. Practical Aspects of Stationary Phases for SEC; Dresden Polymer Discussion, 1999.
  • Reinhold G. Influence of Stationary Phase Polarity on GPC/SEC Separations; Austrian Polymer Days, 2005.
  • Reinhold G. How to Expand the Life Time of Columns; LC/GC The Column, 2009.
  • Hofe T. Beware of Mismatch; LC/GC The Column, 2008.
  • Held D. Increase Resolution and Separation Range; LC/GC The Column, 2011.

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