Selectivity & resolution
Co-elution deconvolution with GC-UV.
Recover quantitation accuracy on co-eluting peaks without re-tuning the GC method.
What this objective means
Co-elution happens when two compounds emerge from the column at the same retention time. GC-UV's continuous spectral acquisition lets you mathematically separate the signals from each component using their reference UV spectra.
Why GC-UV fits
Time-resolved UV spectra enable deconvolution of fully coeluting peaks via spectral unmixing.
Reference
Walsh, P. et al., J. Chromatogr. A 1463, 134–141 (2016).
Recommended model
INSCAN Lab
Spectral library and unmixing algorithms are required for deconvolution.
Typical turnaround
5–10 business days
Typical sample volume
Per sample type
Typical matrices
Frequently asked questions
How much spectral difference is enough to deconvolve two peaks?
A spectral correlation coefficient < ~0.95 between the two reference spectra is typically enough for reliable unmixing.
Will deconvolution affect my reported precision?
Quantitation precision drops slightly versus a fully resolved peak but typically stays within acceptable QC bounds.
Related in Selectivity & resolution
Isomer differentiation (positional / structural)
Resolve isomers that share retention time and mass spectra by their UV fingerprint.
Spectral peak confirmation
Add an orthogonal identity dimension to every chromatographic peak.
Compound-class screening
Bin every peak into a compound class — aromatics, sulfur, oxygenates, olefins — at a glance.
Ready to scope it?
