Our article considers what GC-MS is, explaining how it works, its many advantages and applications, and JEOL USA’s own GC-MS technologies. Read more now!
Our article delves into how photoionization works, as well as its advantages and applications, such as environmental monitoring and petrochemical analysis.
MALDI-TOF is used for analyzing large molecules, enabling polymer characterization, proteomics, mass spectrometry imaging, and advanced materials research.
MS-based polymer identification works through generating intact ions and separating them by mass to reveal polymer composition and structural features.
Field ionization works by using intense electric fields to remove electrons, preserving molecular ions for mass analysis and composition determination.
Chemical ionization plays a distinct role in GC-MS by preserving molecular ions for reliable molecular weight confirmation during complex analyses.
Explore the advantages of chemical ionization (CI) over traditional methods like EI, MALDI, and ESI for accurate molecular analysis in analytical chemistry.
Adhesives require the use of polymer identification to ensure they meet regulatory standards and can perform well. Find out more in JEOL USA’s blog.
There are a wide variety of analyzers available to use in a polymer identification test. Find out which tool would best suit your material research here.