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Polyurethane-Based Porous Carbons Suitable for Medical Application.

Andrzej Szymon SwinarewTomasz FlakAgnieszka JarosińskaŻaneta GarczykJadwiga GaborSzymon SkoczyńskiGrzegorz Marek BrożekJarosław PaluchMagdalena PopczykArkadiusz StanulaSebastian Stach
Published in: Materials (Basel, Switzerland) (2022)
The main aim of the study was to synthesize and analyze spectral data to determine the structure and stereometry of the carbon-based porous material internal structure. Samples of a porous biomaterial were synthesized through anionic polymerization following our own patent and then carbonized. The samples were investigated using MALDI ToF MS, FTIR ATR spectroscopy, optic microscopy, SEM, confocal laser scanning microscopy and CMT imaging. The analysis revealed the chemical and stereological structure of the obtained porous biomaterial. Then, the parameters characterizing the pore geometry and the porosity of the samples were calculated. The developed material can be used to collect adsorption of breathing phase samples to determine the parity composition of exhaled air.
Keyphrases
  • high resolution
  • optical coherence tomography
  • tissue engineering
  • single molecule
  • metal organic framework
  • high speed
  • mass spectrometry
  • healthcare
  • high throughput
  • machine learning