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M. T. Viciosa

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Open access Jul 2026

On the nature of the supercooled liquid state of quadrol.

The dynamic behaviour of quadrol (N,N,N',N'-tetrakis(2-hydroxypropyl)ethylenediamine) in its glassy and supercooled liquid states is examined through a combined experimental and computational approach. Owing to its strong hydrogen-bonding capability and stereochemical complexity, quadrol avoids crystallization and exhibits a glass transition close to -30 °C. Dielectric relaxation spectroscopy (DRS), thermally stimulated depolarization currents (TSDC) and differential scanning calorimetry (DSC) have been employed to probe the α-relaxation, secondary relaxation modes and physical aging phenomena. The α-relaxation shows a marked non-Arrhenius temperature dependence and dominates the dielectric response, either in DRS and TSDC results; additionally, calorimetric and TSDC measurements reveal a strong sensitivity to thermal history and aging conditions. Below Tg, two secondary relaxations become clearly discernible. The faster γ-relaxation, which appears at lowest temperatures, exhibits kinetic features characteristic of localized molecular motions. By contrast, the slower β-relaxation shows a pronounced sensitivity to both aging and water content, signaling a more complex underlying mechanism. The dc electrical conductivity follows a VFTH-like temperature dependence and displays a partially decoupled from the α relaxation. Complementary molecular simulations provide atomistic insight into conformational preferences and hydrogen-bonding environments, offering a microscopic basis for the observed relaxation behaviour. Taken together, these results reinforce the value of quadrol as a model system for probing the interplay between molecular mobility, hydrogen bonding, and dynamic arrest in amorphous organic materials.

M. T. Viciosa, Carlos E. S. Bernardes, Andreia F. M. Santos et al. · 0 citations