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February 14, 2026The Journal of Chemical Physics0 citations

Glycine solvation in supercooled water

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YKYevgeniy KviringJSJ. Marcos SalazarJSJean-Marc Simon

Key Points

  • This research investigates how glycine interacts with water at various temperatures, particularly in supercooled conditions.
  • Conducted molecular dynamics simulations of glycine in liquid water
  • Analyzed thermodynamic properties using Kirkwood–Buff theory
  • Examined structural properties with the q̄4 Steinhard parameter and CHILL+ algorithm
  • Solution deviates from ideality with a peak at 15% glycine concentration
  • Activity coefficient significantly decreases with lower temperature and higher concentration
  • Glycine presence increases ordering of water but inhibits ice formation

Abstract

The study of glycine has recently attracted significant attention in various fields such as astrochemistry and hydrate formation. In the former case, several authors have speculated that glycine, coming from comets, may be at the origin of life on Earth. For hydrates, it is known that their formation is altered by the presence of glycine molecules, solvated in water. The solvation properties of glycine could be responsible for these situations. Here, we address the solvation of glycine in liquid water, using molecular dynamics simulations. Our studies were developed from room temperature down to the supercooled region. A thermodynamic analysis was performed using the Kirkwood–Buff theory and shows that the solution deviates from ideality with a maximum at 15% of glycine. Interestingly, the activity coefficient exhibits a significant decrease with temperature and concentration. A complementary structural analysis with the q̄4 Steinhard parameter and CHILL+ algorithm revealed that the presence of glycine enhances ordering of water, although it prevents the formation of ice.

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Cite This Study

Kviring et al. (2026) studied this question.

synapsesocial.com/papers/699012032ccff479cfe58ba4https://doi.org/10.1063/5.0307530
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