School of Chemistry, Woodhouse Lane, University of Leeds, Leeds LS2 9JT, UK.
Phys Chem Chem Phys. 2010 Sep 21;12(35):10380-7. doi: 10.1039/c003297b. Epub 2010 Jun 25.
Rates of homogeneous nucleation of ice in micrometre-sized water droplets are reported. Measurements were made using a new system in which droplets were supported on a hydrophobic substrate and their phase was monitored using optical microscopy as they were cooled at a controlled rate. Our nucleation rates are in agreement, given the quoted uncertainties, with the most recent literature data. However, the level of uncertainty in the rate of homogeneous freezing remains unacceptable given the importance of homogeneous nucleation to cloud formation in the Earth's atmosphere. We go on to use the most recent thermodynamic data for cubic ice (the metastable phase thought to nucleate from supercooled water) to estimate the interfacial energy of the cubic ice-supercooled water interface. We estimate a value of 20.8 +/- 1.2 mJ m(-2) in the temperature range 234.9-236.7 K.
报道了微米级大小的水滴中冰的均相成核速率。使用一种新系统进行了测量,该系统将水滴支撑在疏水性基底上,并在受控速率冷却时使用光学显微镜监测其相态。考虑到已公布的不确定度,我们的成核速率与最新文献数据一致。然而,给定均相成核对地球大气云形成的重要性,成核率的不确定性水平仍然不能接受。我们接着使用最新的立方冰热力学数据(被认为从过冷水成核的亚稳相)来估算立方冰-过冷水界面的界面能。我们在 234.9-236.7 K 的温度范围内估计了 20.8 ± 1.2 mJ m(-2)的值。