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Fluorocarbon polymers analysis by TG-MS - High m/z range measurement using TG-TOFMS system

Applications | 2018 | JEOLInstrumentation
GC/MSD, GC/TOF
Industries
Energy & Chemicals
Manufacturer
JEOL, NETZSCH

Summary

Importance of the Topic


Thermogravimetric analysis linked with mass spectrometry provides insight into thermal decomposition processes of organic materials and polymers.
High molecular weight compounds often exceed the detection limits of conventional quadrupole MS, highlighting the need for TOFMS coupling to extend measurable mass range beyond m/z 1000.

Objectives and Overview of the Study


This study demonstrates the application of a TG-TOFMS system to analyze a fluorocarbon polymer.
It aims to correlate weight loss events with evolved fragment species and to verify the system capability for high m/z detection up to beyond 2500.

Methodology


A 5 mg sample underwent a temperature ramp from 50 °C to 650 °C at 10 °C per minute under helium flow.
A gas chromatograph served as a heated transfer line at 350 °C without column separation, directing evolved gases into the TOFMS.

Used Instrumentation


  • Time-of-flight mass spectrometer JMS-T200GC AccuTOF GC (JEOL)
  • Simultaneous thermogravimetric analyzer STA2500 Regulus (NETZSCH)
  • Electron impact ionization at 70 eV and 300 µA
  • Mass range monitored m/z 35–3200

Main Results and Discussion


The TG curve indicated a major weight loss between 500 °C and 600 °C.
Extracted ion chromatograms at m/z 1531, 1831, 2031, 2393 and 2543 aligned with the TG event, confirming fragment release profiles.
EI mass spectra revealed series of ions with 50 Da repeats corresponding to CF2 units and a minor series at 38 Da linked to F2 fragments.

Benefits and Practical Applications


  • Extended m/z detection enables characterization of high molecular weight oligomers
  • Improved qualitative analysis of synthetic polymers and thermal decomposition pathways
  • Useful in materials development, quality control and failure analysis of fluoropolymer-based products

Future Trends and Possibilities


Advancements may include higher resolution TOFMS instruments and coupling with chromatographic separation for complex mixtures.
Integration with chemometric tools and AI-driven spectral interpretation can further enhance polymer characterization.

Conclusion


The TG-TOFMS approach effectively captures thermal decomposition of fluorocarbon polymers, revealing high mass fragments beyond the reach of quadrupole detectors.
This methodology offers a powerful tool for detailed polymer analysis and broader applications in materials science.

Reference


No published literature references were provided in the original document.

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