Please use this identifier to cite or link to this item: https://sci.ldubgd.edu.ua/jspui/handle/123456789/3681
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dc.contributor.authorShpotyuk, Olga-
dc.contributor.authorAdamek, Stanislaw-
dc.contributor.authorBezvushko, Elvira-
dc.contributor.authorCebulski, Josef-
dc.contributor.authorIskiv, Maryna-
dc.contributor.authorShpotyuk, Oleh-
dc.contributor.authorBalitska, Valentina-
dc.date.accessioned2017-05-15T08:37:41Z-
dc.date.available2017-05-15T08:37:41Z-
dc.date.issued2017-
dc.identifier.urihttp://hdl.handle.net/123456789/3681-
dc.description-uk
dc.description.abstractLight-curing volumetric shrinkage in dimethacrylate-based dental resin composites Dipol® is examined through comprehensive kinetics research employing nanoindentation measurements and nanoscale atomic-deficient study with lifetime spectroscopy of annihilating positrons. Photopolymerization kinetics determined through nanoindentation testing is shown to be described via single-exponential relaxation function with character time constants reaching respectively 15.0 and 18.7 s for nanohardness and elastic modulus. Atomic-deficient characteristics of composites are extracted from positron lifetime spectra parameterized employing unconstrained x3-term fitting. The tested photopolymerization kinetics can be adequately reflected in time-dependent changes observed in average positron lifetime (with 17.9 s time constant) and fractional free volume of positronium traps (with 18.6 s time constant). This correlation proves that fragmentation of free-volume positronium-trapping sites accompanied by partial positronium-to-positron traps conversion determines the light-curing volumetric shrinkage in the studied composites.uk
dc.description.sponsorship-uk
dc.language.isoenuk
dc.publisherNanoscale Research Letter, 2017, 12:75 DOI 10.11.861/s 11671-017-1845-y, p.8uk
dc.subjectComposites, Nanoindentation, Filler, Light curing, Positron annihilation, Trappinguk
dc.titleLight-Curing Volumetric Shrinkage in Dimethacrylate-Based Dental Compoites by Nanoindentation and PAL Studyuk
dc.typeArticleuk
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