Literature DB >> 28876070

Role of Salt, Pressure, and Water Activity on Homogeneous Ice Nucleation.

Jorge R Espinosa1, Guiomar D Soria1, Jorge Ramirez2, Chantal Valeriani3, Carlos Vega1, Eduardo Sanz1.   

Abstract

Pure water can be substantially supercooled below the melting temperature without transforming into ice. The achievable supercooling can be enhanced by adding solutes or by applying hydrostatic pressure. Avoiding ice formation is of great importance in the cryopreservation of food or biological samples. In this Letter, we investigate the similarity between the effects of pressure and salt on ice formation using a combination of state-of-the-art simulation techniques. We find that both hinder ice formation by increasing the energetic cost of creating the ice-fluid interface. Moreover, we examine the widely accepted proposal that the ice nucleation rate for different pressures and solute concentrations can be mapped through the activity of water [ Koop , L. ; Tsias , P. Nature , 2000 , 406 , 611 ]. We show that such a proposal is not consistent with the nucleation rates predicted in our simulations because it does not include all parameters affecting ice nucleation. Therefore, even though salt and pressure have a qualitatively similar effect on ice formation, they cannot be quantitatively mapped onto one another.

Entities:  

Year:  2017        PMID: 28876070     DOI: 10.1021/acs.jpclett.7b01551

Source DB:  PubMed          Journal:  J Phys Chem Lett        ISSN: 1948-7185            Impact factor:   6.475


  2 in total

1.  The enhancement and suppression of immersion mode heterogeneous ice-nucleation by solutes.

Authors:  Thomas F Whale; Mark A Holden; Theodore W Wilson; Daniel O'Sullivan; Benjamin J Murray
Journal:  Chem Sci       Date:  2018-03-27       Impact factor: 9.825

2.  Entropy and the Tolman Parameter in Nucleation Theory.

Authors:  Jürn W P Schmelzer; Alexander S Abyzov; Vladimir G Baidakov
Journal:  Entropy (Basel)       Date:  2019-07-09       Impact factor: 2.524

  2 in total

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