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重水(D₂O)纳米液滴的冻结

Freezing of heavy water (D2O) nanodroplets.

作者信息

Bhabhe Ashutosh, Pathak Harshad, Wyslouzil Barbara E

机构信息

William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University , Columbus, Ohio 43210, United States.

出版信息

J Phys Chem A. 2013 Jul 3;117(26):5472-82. doi: 10.1021/jp400070v. Epub 2013 Jun 24.

Abstract

We follow the freezing of heavy water (D2O) nanodroplets formed in a supersonic nozzle apparatus using position resolved pressure trace measurements, Fourier transform infrared spectroscopy, and small-angle X-ray scattering. For these 3-9 nm radii droplets, freezing starts between 223 and 225 K, at volume based ice nucleation rates Jice,V on the order of 10(23) cm(-3) s(-1) or surface based ice nucleation rates Jice,S on the order of 10(16) cm(-2) s(-1). The temperatures corresponding to the onset of D2O ice nucleation are higher than those reported for H2O by Manka et al. [Manka, A.; Pathak, H.; Tanimura, S.; Wölk, J.; Strey, R.; Wyslouzil, B. E. Phys. Chem. Chem. Phys.2012, 14, 4505]. Although the values of Jice,S scale somewhat better with droplet size than values of Jice,V, the data are not accurate enough to state that nucleation is surface initiated. Finally, using current estimates of the thermophysical properties of D2O and the theoretical framework presented by Murray et al. [Murray, B. J.; Broadley, S. L.; Wilson, T. W.; Bull, S. J.; Wills, R. H.; Christenson, H. K.; Murray, E. J. Phys. Chem. Chem. Phys.2010, 12, 10380], we find that the theoretical ice nucleation rates are within 3 orders of magnitude of the measured rates over an ∼15 K temperature range.

摘要

我们通过位置分辨压力轨迹测量、傅里叶变换红外光谱和小角X射线散射,对在超音速喷嘴装置中形成的重水(D2O)纳米液滴的冻结过程进行了研究。对于这些半径为3 - 9纳米的液滴,冻结在223至225 K之间开始,基于体积的冰核化速率Jice,V约为10(23) cm(-3) s(-1),或基于表面的冰核化速率Jice,S约为10(16) cm(-2) s(-1)。与D2O冰核化开始对应的温度高于Manka等人[Manka, A.; Pathak, H.; Tanimura, S.; Wölk, J.; Strey, R.; Wyslouzil, B. E. Phys. Chem. Chem. Phys.2012, 14, 4505]报道的H2O的温度。尽管Jice,S的值随液滴尺寸的变化比Jice,V的值更具规律性,但数据精度尚不足以表明成核是由表面引发的。最后,利用当前对D2O热物理性质的估计以及Murray等人[Murray, B. J.; Broadley, S. L.; Wilson, T. W.; Bull, S. J.; Wills, R. H.; Christenson, H. K.; Murray, E. J. Phys. Chem. Chem. Phys.2010, 12, 10380]提出的理论框架,我们发现在约15 K的温度范围内,理论冰核化速率与测量速率相差在3个数量级以内。

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