Calorimetry is an effective analytical tool to characterize the glass transition and phase transitions under confinement. Calorimetry offers a broad dynamic range regarding heating and cooling rates, including isothermal and temperature modulated operation. Today 12 orders of magnitude in scanning rate can be covered by combining different types of calorimeters. The broad dynamic range, comparable to dielectric spectroscopy, is especially of interest for the study of kinetically controlled processes like crystallization or glass transition. Accuracy of calorimetric measurements is not very high. Commonly it does not reach 0.1% and often accuracy is only a few percent. Nevertheless, calorimetry can reach high sensitivity and reproducibility....
Glassy dynamics under nanoscale confinement is currently a topic under intense debate in soft matter...
[Abstract] Usefulness of thermoanalytical survey carried out prior to laborious and time-consuming h...
Glass transition (GT) has been a fascinating, but challenging subject in the condensed matter scienc...
© 2019 The past two decades have witnessed the rapid development of nanocalorimetry, a novel materi...
Resumen del trabajo presentado a la 10th Conference on Broadband Dielectric Spectroscopy and its App...
The past two decades have witnessed the rapid development of nanocalorimetry, a novel materials char...
Low temperature heat capacity calorimetry has a long history in the field of chemical thermodynamics...
A differential AC-chip calorimeter capable to measure the glass transition in nanometer thin films i...
International audienceWe present a nanocalorimeter designed for the measurement of the dynamic heat ...
Complex heat capacity spectra were measured by stochastic temperature modulated calorimetry using a ...
7th IDMRCS: Relaxation in Complex SystemsUnderstanding why the glass transition temperature (Tg) of ...
The characteristic length ξα from calorimetry describes the size of subsystems which are statistical...
This thesis reports the working principle and the building up of a dynamic differential nanocalorime...
International audienceNanometric confinement of fluids in porous media is a classical way to stabili...
In this paper we report the measurements of specific heats of five glass formers as they are cooled ...
Glassy dynamics under nanoscale confinement is currently a topic under intense debate in soft matter...
[Abstract] Usefulness of thermoanalytical survey carried out prior to laborious and time-consuming h...
Glass transition (GT) has been a fascinating, but challenging subject in the condensed matter scienc...
© 2019 The past two decades have witnessed the rapid development of nanocalorimetry, a novel materi...
Resumen del trabajo presentado a la 10th Conference on Broadband Dielectric Spectroscopy and its App...
The past two decades have witnessed the rapid development of nanocalorimetry, a novel materials char...
Low temperature heat capacity calorimetry has a long history in the field of chemical thermodynamics...
A differential AC-chip calorimeter capable to measure the glass transition in nanometer thin films i...
International audienceWe present a nanocalorimeter designed for the measurement of the dynamic heat ...
Complex heat capacity spectra were measured by stochastic temperature modulated calorimetry using a ...
7th IDMRCS: Relaxation in Complex SystemsUnderstanding why the glass transition temperature (Tg) of ...
The characteristic length ξα from calorimetry describes the size of subsystems which are statistical...
This thesis reports the working principle and the building up of a dynamic differential nanocalorime...
International audienceNanometric confinement of fluids in porous media is a classical way to stabili...
In this paper we report the measurements of specific heats of five glass formers as they are cooled ...
Glassy dynamics under nanoscale confinement is currently a topic under intense debate in soft matter...
[Abstract] Usefulness of thermoanalytical survey carried out prior to laborious and time-consuming h...
Glass transition (GT) has been a fascinating, but challenging subject in the condensed matter scienc...