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- W194881738 endingPage "338" @default.
- W194881738 startingPage "307" @default.
- W194881738 abstract "Calorimetry is an effective analytical tool to characterize the glass transition under confinement. The step in heat capacity at the dynamic glass transition in nanometer thin films can effectively be measured with low addenda heat capacity chip calorimeters. Since AC-calorimetry measures a compliance (({C}_{p})) in the linear response regime it probes molecular dynamics in the super-cooled liquid state. Down to a few nanometers of film thickness, AC-calorimetry always reveals bulk dynamics in the vicinity of the dynamic glass transition. This is different from experiments probing the transition from the glassy to the liquid state where liquid-like layers at the surface of the glass or free volume diffusion in the glass may influence the observed behavior. Temperature modulated or AC-calorimetry offers a broad dynamic range. Today 11 orders of magnitude in frequency are covered for bulk samples by combining various kinds of calorimeters. This broad dynamic range, akin to broadband dielectric spectroscopy, is significantly important for the study of confinement effects. Varying the frequency allows to change the corresponding length scale of the probed segmental dynamics. In a relaxation map, again, bulk behavior is observed for all investigated films down to a few nanometer film thickness." @default.
- W194881738 created "2016-06-24" @default.
- W194881738 creator A5047186380 @default.
- W194881738 date "2014-01-01" @default.
- W194881738 modified "2023-09-27" @default.
- W194881738 title "Dynamic Calorimetric Glass Transition in Thin Polymer Films" @default.
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