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首页> 外文期刊>The Journal of Chemical Physics >Relaxation dynamics and transformation kinetics of deeply supercooled water: Temperature, pressure, doping, and proton/deuteron isotope effects
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Relaxation dynamics and transformation kinetics of deeply supercooled water: Temperature, pressure, doping, and proton/deuteron isotope effects

机译:深度过冷水的放松动力学和转化动力学:温度,压力,掺杂和质子/氘代同位素效应

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摘要

Above its glass transition, the equilibrated high-density amorphous ice (HDA) transforms to the low-density pendant (LDA). The temperature dependence of the transformation is monitored at ambient pressure using dielectric spectroscopy and at elevated pressures using dilatometry. It is found that near the glass transition temperature of deuterated samples, the transformation kinetics is 300 times slower than the structural relaxation, while for protonated samples, the time scale separation is at least 30 000 and insensitive to doping. The kinetics of the HDA to LDA transformation lacks a proton/deuteron isotope effect, revealing that this process is dominated by the restructuring of the oxygen network. The x-ray diffraction experiments performed on samples at intermediate transition stages reflect a linear combination of the LDA and HDA patterns implying a macroscopic phase separation, instead of a local intermixing of the two amorphous states. Published by AIP Publishing.
机译:高于其玻璃化转变,平衡的高密度无定形冰(HDA)转化为低密度吊坠(LDA)。 使用稀释测定法在环境压力下在环境压力下监测转化的温度依赖性。 结果发现,在氘化样品的玻璃化转变温度附近,转化动力学比结构松弛慢300倍,而对于质子化样品,时间尺度分离为至少30 000并且对掺杂不敏感。 HDA对LDA转化的动力学缺乏质子/氘代同位素效应,揭示了该过程是由氧网络的重组来实现的。 在中间转变阶段的样品上进行的X射线衍射实验反映了暗示宏观相分离的LDA和HDA图案的线性组合,而不是两个非晶态的局部混合。 通过AIP发布发布。

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