Berkowicz Sharon, Andronis Iason, Girelli Anita, Filianina Mariia, Bin Maddalena, Nam Kyeongmin, Shin Myeongsik, Kowalewski Markus, Katayama Tetsuo, Giovambattista Nicolas, Kim Kyung Hwan, Perakis Fivos
Department of Physics, AlbaNova University Center, Stockholm University, SE-10691, Stockholm, Sweden.
Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang, 37673, Republic of Korea.
Nat Commun. 2024 Dec 5;15(1):10610. doi: 10.1038/s41467-024-54890-y.
Recent experiments and theoretical studies strongly indicate that water exhibits a liquid-liquid phase transition (LLPT) in the supercooled domain. An open question is how the LLPT of water can affect the properties of aqueous solutions. Here, we study the structural and thermodynamic properties of supercooled glycerol-water microdroplets at dilute conditions (χ = 3.2% glycerol mole fraction). The combination of rapid evaporative cooling with femtosecond X-ray scattering allows us to outrun crystallization and gain access to the deeply supercooled regime down to T = 229.3 K. We find that the density fluctuations of the glycerol-water solution or, equivalently, its isothermal compressibility, κ, increases upon cooling. This is confirmed by molecular dynamics simulations, which indicate that the presence of glycerol shifts the temperature of maximum κ from T = 230 K in pure water down to T = 223 K in the solution. Our findings elucidate the interplay between the complex behavior of water, including its LLPT, and the properties of aqueous solutions at low temperatures, which can have practical consequences in cryogenic biological applications and cryopreservation techniques.
最近的实验和理论研究有力地表明,水在过冷区域会出现液-液相转变(LLPT)。一个悬而未决的问题是水的LLPT如何影响水溶液的性质。在此,我们研究了稀溶液条件下(χ = 3.2%甘油摩尔分数)过冷甘油-水微滴的结构和热力学性质。快速蒸发冷却与飞秒X射线散射相结合,使我们能够避免结晶,并进入低至T = 229.3 K的深度过冷状态。我们发现,甘油-水溶液的密度涨落,或者等效地说,其等温压缩率κ,在冷却时会增加。分子动力学模拟证实了这一点,模拟结果表明,甘油的存在将κ最大值对应的温度从纯水中的T = 230 K降低到了溶液中的T = 223 K。我们的研究结果阐明了水的复杂行为(包括其LLPT)与低温下水溶液性质之间的相互作用,这在低温生物应用和冷冻保存技术中可能会产生实际影响。