Аморфный лед средней плотности, полученный разложением водно-гелиевого геля

Виталий Витальевич Синицын, О.Г. Рыбченко, В.Б. Ефимов, А А Вирюс
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Abstract

The article presents experimental studies of structural changes that occur during heating of nanosized powders of amorphous ice obtained by decay of a water-helium gel. Thermal annealing of the obtained samples was carried out by short exposures (about 15 minutes) at different temperatures in the range of 110-230K. The behavior of the amorphous phase during annealing was analyzed within the framework of its description by a mixture of amorphous ices of low and medium density (LDA and MDA, respectively). It was found that at the such description, the virgin sample was predominantly in the MDA state, while the proportion of the LDA phase was about 7 times less (MDA/LDA ≈ 7:1). It has been established that during annealing, a multistage process of structural transformations of the initial LDA + MDA sample takes place: from initial changes in the amorphous state at 110 K through crystallization of the cubic ice phase Ic with its intensive growth at a temperature of 130 K to the transformation of cubic ice into the hexagonal phase Ih in the temperature range T =135÷230K.
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氦凝胶分解产生的平均密度无定形冰
本文介绍了由水氦凝胶衰变获得的非晶冰纳米粉末在加热过程中结构变化的实验研究。在110-230K的不同温度下,通过短时间暴露(约15分钟)对得到的样品进行热退火。在低密度和中密度(分别为LDA和MDA)的非晶态冰混合物的描述框架内,分析了非晶态相在退火过程中的行为。我们发现,在这样的描述下,原始样品主要处于MDA状态,而LDA相的比例大约少了7倍(MDA/LDA≈7:1)。结果表明,在退火过程中,初始LDA + MDA试样发生了一个多阶段的结构转变过程:从110 K时的初始无定形转变,到130 K时立方冰相Ic的结晶和密集生长,再到T =135÷230K温度范围内立方冰向六方相Ih的转变。
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