Mass spectrometric imaging of synthetic polymers

•Principals of mass spectrometric imaging (MSI) of synthetic polymers.•The ionization techniques SIMS and MALDI for MSI are compared.•A short perspective about polymer blend SIMS-MSI is presented.•An overview of recent applications and future prospects is given. The analysis of synthetic polymers re...

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Veröffentlicht in:Analytica chimica acta 2014-01, Vol.808, p.10-17
Hauptverfasser: Crecelius, Anna C., Vitz, Jürgen, Schubert, Ulrich S.
Format: Artikel
Sprache:eng
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Zusammenfassung:•Principals of mass spectrometric imaging (MSI) of synthetic polymers.•The ionization techniques SIMS and MALDI for MSI are compared.•A short perspective about polymer blend SIMS-MSI is presented.•An overview of recent applications and future prospects is given. The analysis of synthetic polymers represents today an important part of polymer science to determine their physical properties and to optimize the performance of polymeric materials for block copolymers as well as blend systems. The characterization can easily and rapidly be performed by mass spectrometry. In particular, the film formation of a synthetic polymer is of interest in material research and quality control, which can be determined by employing mass spectrometric imaging (MSI) using secondary ion mass spectrometry (SIMS) or matrix-assisted laser desorption/ionization (MALDI) mass spectrometry. MALDI-MSI has been rapidly improved for the analysis of tissue cross-sections due to its soft ionization and accessible m/z range, which both also play an important role in polymer science. On the other hand, SIMS-MSI enables a sub-micrometer molecular spatial resolution, which is limited in MALDI-MSI due to the spatial resolution capabilities of the laser desorption process. The aim of the present contribution is to summarize recent advances in both imaging techniques for the analysis of synthetic polymers and to highlight their capabilities to correlate several imaging modalities in future applications.
ISSN:0003-2670
1873-4324
DOI:10.1016/j.aca.2013.07.033