The Heat Capacity of Bulk Supercooled Water between 185 and 205 K

Abstract Recent advances in experimental, computational, and theoretical research on aqueous phases emphasize the need for accurate measurements of the thermodynamic parameters of supercooled bulk-like water at temperatures below its homogeneous ice nucleation limit near 230 K. Using a fast scanning calorimetry technique, we have investigated softening of 25–350 nm thick amorphous solid water films vapor-deposited near 136 K and heated at rates up to a megakelvin per second. The analysis of the relaxation endotherms measured at distinct heating rates shows that the superheated amorphous water films undergo a complete relaxation to a meta-equilibrium liquid state, which heat capacity almost doubles between 185 and 205 K. The inferred heat capacity values are consistent with both the recently reported maximum heat capacity near 229 K and with results of past analyses, which assume a thermodynamic continuity between deeply supercooled and ordinary water.

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Publication Details

Journal
The Journal of Physical Chemistry Letters
Published
2026-09-17
DOI
https://doi.org/10.1021/acs.jpclett.6c02069
Primary Topic
Material Dynamics and Properties
Type
article
Field-Weighted Citation Impact
0.00

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article

The Heat Capacity of Bulk Supercooled Water between 185 and 205 K

Deepanjan Bhattacharya, Vlad Sadtchenko, Chloe V. Waldt, Tanya Ryzi
The Journal of Physical Chemistry Letters
Material Dynamics and Properties
article

The Heat Capacity of Bulk Supercooled Water between 185 and 205 K

Deepanjan Bhattacharya, Vlad Sadtchenko, Chloe V. Waldt, Tanya Ryzi
article en

Abstract

Abstract Recent advances in experimental, computational, and theoretical research on aqueous phases emphasize the need for accurate measurements of the thermodynamic parameters of supercooled bulk-like water at temperatures below its homogeneous ice nucleation limit near 230 K. Using a fast scanning calorimetry technique, we have investigated softening of 25–350 nm thick amorphous solid water films vapor-deposited near 136 K and heated at rates up to a megakelvin per second. The analysis of the relaxation endotherms measured at distinct heating rates shows that the superheated amorphous water films undergo a complete relaxation to a meta-equilibrium liquid state, which heat capacity almost doubles between 185 and 205 K. The inferred heat capacity values are consistent with both the recently reported maximum heat capacity near 229 K and with results of past analyses, which assume a thermodynamic continuity between deeply supercooled and ordinary water.

The Journal of Physical Chemistry Letters
George Washington University (US)
Office of Naval Research
Clean water and sanitation
Openalex Percentile: Top 25%
Material Dynamics and Properties
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The Heat Capacity of Bulk Supercooled Water between 185 and 205 K — Deepanjan Bhattacharya, Vlad Sadtchenko, et al. · The Journal of Physical Chemistry Letters (2026) | TGRS Research Map | TGRS