Literature

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Distinguishing the C3 vs SH4 Mass Split by Comprehensive TwoDimensional Gas Chromatography High Resolution Time-of-Flight Mass Spectrometry

Multi-Mode Source MMS

The Multi-Mode Ion Source provides a single solution for Electron Ionization, Positive Chemical Ionization, and Electron Capture Negative Ionization.

Nitrogen and Protein Feeds Grains Pet Food using FP928

LECO and Genedata Collaborate on Mass Spectrometry Data Analysis for High Resolution TOFMS Systems

LECO and Berkeley Lab Partner for Metabolomics Advancements

Distinguishing Mass Split by GCxGC HRTOF-MS

Comprehensive, Non-Target Characterization of Blinded Environmental Exposome Standards using GCxGC and High Resolution Time-of-Flight Mass Spectrometry

Comprehensive Analysis of Human Plasma Using Gas Chromatography-High Resolution Time-of-Flight Mass Spectrometry: A Workflow to Leverage Electron and Chemical Ionization

Crucibles and Fluxes for Inorganic Oxygen, Nitrogen, and Hydrogen Determination

DSX1000 Brochure

KingScan Indentation Microscope

Separation Science Consumables – Restek

Kjeldahl vs Dumas White Paper

Folded Flight Path with Pegasus GC-HRT

High-resolution Deconvolution

Comprehensive Evaluation of Pesto Aroma Profiles Using SPME-GCxGC-TOFMS

Differentiation of Regular and Barrel-Aged Maple Syrups with ChromaTOF Tile

Frankincense and Myrrh: Visual Characterization and Comparison of Essential Oils with GCxGC Structured Chromatograms

Statistical Differentiation of Pesto Products Using SPME-GCxGC-TOFMS and ChromaTOF Tile Software

Improved Characterization and Differentiation of Perfume Samples with GCxGC

Gas chromatography (GC) is an important tool to separate individual analytes in a complex sample. Coupling GC with time-of-flight mass spectrometry (TOFMS) allows for identification and quantification of the separated analytes.