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冰中动力学控制的两步非晶化及非晶-非晶转变

Kinetically Controlled Two-Step Amorphization and Amorphous-Amorphous Transition in Ice.

作者信息

Lin Chuanlong, Yong Xue, Tse John S, Smith Jesse S, Sinogeikin Stanislav V, Kenney-Benson Curtis, Shen Guoyin

机构信息

HPCAT, Geophysical Laboratory, Carnegie Institution of Washington, Argonne, Illinois 60439, USA.

Department of Physics and Engineering Physics, University of Saskatchewan, Saskatoon, S7N 5E2 Canada.

出版信息

Phys Rev Lett. 2017 Sep 29;119(13):135701. doi: 10.1103/PhysRevLett.119.135701.

Abstract

We report the results of in situ structural characterization of the amorphization of crystalline ice Ih under compression and the relaxation of high-density amorphous (HDA) ice under decompression at temperatures between 96 and 160 K by synchrotron x-ray diffraction. The results show that ice Ih transforms to an intermediate crystalline phase at 100 K prior to complete amorphization, which is supported by molecular dynamics calculations. The phase transition pathways show clear temperature dependence: direct amorphization without an intermediate phase is observed at 133 K, while at 145 K a direct Ih-to-IX transformation is observed; decompression of HDA shows a transition to low-density amorphous ice at 96 K and ∼1  Pa, to ice Ic at 135 K and to ice IX at 145 K. These observations show that the amorphization of compressed ice Ih and the recrystallization of decompressed HDA are strongly dependent on temperature and controlled by kinetic barriers. Pressure-induced amorphous ice is an intermediate state in the phase transition from the connected H-bond water network in low pressure ices to the independent and interpenetrating H-bond network of high-pressure ices.

摘要

我们报告了通过同步加速器X射线衍射对96至160 K温度下压缩时结晶冰Ih的非晶化以及减压时高密度非晶(HDA)冰的弛豫进行原位结构表征的结果。结果表明,冰Ih在完全非晶化之前于100 K转变为中间晶相,这得到了分子动力学计算的支持。相变途径表现出明显的温度依赖性:在133 K观察到无中间相的直接非晶化,而在145 K观察到直接的Ih到IX转变;HDA的减压显示在96 K和约1 Pa时转变为低密度非晶冰,在135 K时转变为冰Ic,在145 K时转变为冰IX。这些观察结果表明,压缩冰Ih的非晶化和减压HDA的再结晶强烈依赖于温度,并受动力学势垒控制。压力诱导的非晶冰是从低压冰中连接的氢键水网络到高压冰中独立且相互贯穿的氢键网络的相变中的中间状态。

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