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Analysis of advanced materials by FD/FI using “AccuTOF GC”

Applications | 2006 | JEOLInstrumentation
GC/MSD, GC/TOF
Industries
Energy & Chemicals
Manufacturer
JEOL

Summary

Significance of the Topic


A robust analytical approach for characterizing near-infrared photosensitive dyes is crucial in the development of advanced photoinitiators used in polymer synthesis and coatings. Field desorption mass spectrometry offers a gentle ionization path that preserves molecular ions of nonvolatile or thermally labile compounds, making it highly valuable for quality control and formulation research in materials science.

Objectives and Study Overview


This study aimed to demonstrate the capability of JEOL AccuTOF GC with field desorption (FD) to analyze two representative NIR photosensitive dye salts. Key goals were to verify the detection of intact molecular ions, assess sensitivity toward cationic and anionic fragments, and compare performance across different dye structures.

Methodology and Instrumentation


Samples
  • Two NIR-sensitive salts supplied by Showa Denko K K: IRT and IR13F

Instrumental Details
  • Mass spectrometer JMS-T100GC AccuTOF GC equipped for FD+
  • Mass range m/z 30–900
  • Spectral interval 0.3 seconds
  • Cathode potential –10 kV
  • Emitter current ramp from 0 to 40 mA at 51.2 mA/min

Main Results and Discussion


Both dye salts produced clear molecular ion signals with minimal fragmentation:
  • IRT salt
    - Base peak at m/z 655 corresponding to the cation [C45H59N4]+
    - Fragment at m/z 627 from loss of C2H4
    - Anionic fragment [C7H7SO3+H]+ at m/z 172
  • IR13F salt
    - Base peak at m/z 573 for the cation [C39H45O2N2]+
    - Strong molecular ion at m/z 722 including anion CF3SO3–
    - Doubly charged cation signal at m/z 287

These findings highlight FD+ as an effective soft ionization strategy, particularly suited for salt-type dyes where both cationic and anionic moieties can be tracked with high sensitivity.

Benefits and Practical Applications


Field desorption mass spectrometry of NIR-photosensitive salts provides:
  • High molecular ion yields with reduced fragmentation
  • Accurate mass detection of both ionic components in dye salts
  • Enhanced sensitivity for quality control in photopolymer production

This method supports rapid screening of novel photoinitiators and stability assessments under formulation conditions.

Future Trends and Potential Applications


Advancements may include coupling FD with high-resolution time-of-flight analyzers to improve mass accuracy and isotope pattern resolution. Integration with chromatographic separation could expand the technique to complex mixtures of dye formulations or degradation products. Further miniaturization of emitters and automation of sample deposition will accelerate routine use in industrial QA/QC labs.

Conclusion


The application of FD+ on the AccuTOF GC platform successfully detected intact molecular ions of two NIR-photosensitive dye salts with high sensitivity and low fragmentation. This work underscores the value of field desorption for characterizing advanced materials where preservation of ionic species is essential.

References


Analysis of advanced materials by FD/FI using AccuTOF GC Part IV; JEOL Ltd Mass Spectrometry Application Note No 092; 2006

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