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Calorimetric Monitoring of the Sub-Tg Crystal Growth in Molecular Glasses: The Case of Amorphous Nifedipine

ČlánekOmezený přístuppeer-reviewedpostprint
dc.contributor.authorSvoboda, Romancze
dc.date.accessioned2026-07-02T06:43:19Z
dc.date.issued2025eng
dc.description.abstractNon-isothermal differential scanning calorimetry (DSC) and Raman microscopy were used to study the crystallization behavior of the 20-50 mu m amorphous nifedipine (NIF) powder. In particular, the study was focused on the diffusionless glass-crystal (GC) growth mode occurring below the glass transition temperature (Tg). The exothermic signal associated with the GC growth was indeed directly and reproducibly recorded at heating rates q+ <= 0.5 degrees C<middle dot>min-1. During the GC growth, the alpha p polymorphic phase was exclusively formed, as confirmed via Raman microscopy. In addition to the freshly prepared NIF samples, the crystallization of the powders annealed for 7 h at 20 degrees C was also monitored-approx. 50-60% crystallinity was achieved. For the annealed NIF powders, the confocal Raman microscopy verified a proportional absence of the crystalline phase on the sample surface (indicating its dominant formation along the internal micro-cracks, which is characteristic of the GC growth). All DSC data were modeled in terms of the solid-state kinetic equation paired with the autocatalytic model; the kinetic complexity was described via reaction mechanism based on the overlap of 3-4 independent processes. The kinetic trends associated with decreasing q+ were identified, confirming the temperature-dependent kinetic behavior, and used to calculate a theoretical kinetic prediction conformable to the experimentally performed 7 h annealing at 20 degrees C. The theoretical model slightly underestimated the true extent of the GC growth, predicting the crystallinity to be 35-40% after 7 h (such accuracy is still extremely good in comparison with the standard kinetic approaches nowadays). Further research in the field of kinetic analysis should thus focus on the methodological ways of increasing the accuracy of considerably extrapolated kinetic predictions.eng
dc.description.abstract-translatedNeizotermní DSC a Ramanova spektroskopie byly použity pro studium krystalizačního chování jemného prášku amorfního nifedipinu. Studie byla zaměřena na nedifúzní růstový mód ve skle vyskystující se v oblasti pod teplotou skelného přechodu. Během krystalizace vznikala alfa polymorfní fáze, což bylo prokázáno Ramanovou spektroskopií. Více než 50 % stupně krystalinity bylo dosaženo již při ponechání amorfních prášků po 7 hodin při 20 °C. Naměřená DSC data byla proložena autokatalytickým kinetickým modelem.cze
dc.formatp. 1679eng
dc.identifier.doi10.3390/molecules30081679eng
dc.identifier.issn1420-3049eng
dc.identifier.obd39891594eng
dc.identifier.scopus2-s2.0-105003658193eng
dc.identifier.urihttps://hdl.handle.net/10195/88653
dc.identifier.wos001475323400001eng
dc.language.isoengeng
dc.peerreviewedyeseng
dc.publicationstatuspostprinteng
dc.publisherMDPIeng
dc.relation.ispartofMolecules, volume 30, issue: 8eng
dc.relation.publisherversionhttps://doi.org/10.3390/molecules30081679eng
dc.rightsPráce není přístupnáeng
dc.subjectamorphous nifedipineeng
dc.subjectGC growtheng
dc.subjectRaman microscopyeng
dc.subjectDSCeng
dc.subjectkinetic predictioneng
dc.subjectamorfní nifedipincze
dc.subjectrůst krystalůcze
dc.subjectRamanova mikroskopiecze
dc.subjectDSCcze
dc.subjectkinetická predikcecze
dc.titleCalorimetric Monitoring of the Sub-Tg Crystal Growth in Molecular Glasses: The Case of Amorphous Nifedipineeng
dc.title.alternativeKalorimetrické monitorování krystalového růstu pod skelným přechodem v molekulárních sklech: Studie amorfního nifedipinucze
dc.typearticleeng

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Svoboda-Molecules-30-2025-01679.pdf
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