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Item DATA: The role of thermal history, density and pressure changes on the non-equilibrium glass transition dynamics of low-molecular-weight poly(phenylmethyl siloxane) (PMPS) under nanopore-confinement(Institute of Nuclear Physics Polish Academy of Sciences, 2024) Chat, Katarzyna; Adrjanowicz, Karolina; Juszyńska-Gałązka, EwaLow-molecular-weight poly(phenylmethyl siloxane) (PMPS 2.5k) confined in anodic alumina oxide (AAO) nanopores were used to study non-equilibrium glass transition dynamics. For this purpose, a series of time-dependent dielectric measurements were performed to investigate the influence of pore size, equilibration temperature and jump depth on the equilibration kinetics of nanopore-confined polymers. Then, the obtained data were used to determine the amount of changes in volume and pressure generated by the pores. The dataset includes a description of the AAO nanopores infiltration procedure and raw dielectric data. The data was used in the publication: Chat, K., Adrjanowicz, K., Juszyńska-Gałązka, E., The role of thermal history, density, and pressure changes on the non-equilibrium glass transition dynamics of low-molecular-weight poly(phenylmethyl siloxane) (PMPS) under nanopore-confinement. Macromolecules 2024, 57, 16, 7941–7952. https://doi.org/10.1021/acs.macromol.4c01207