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首页> 外文期刊>The Journal of Chemical Physics >On the stability of the disordered molecular alloy phase of ammonia hemihydrate
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On the stability of the disordered molecular alloy phase of ammonia hemihydrate

机译:半水氨水无序分子合金相的稳定性

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The disordered-molecular-alloy phase (DMA) of ammonia hydrates [J.S. Loveday and R. J. Nelmes, Phys. Rev. Lett. 83, 4329 (1999)] is unique in that it has substitutional disorder of ammonia and water over the molecular sites of a body centred cubic lattice. Whilst this structure has been observed in ammonia di- and mono-hydrate compositions, it has not been conclusively observed in the ammonia hemihydrate system. This work presents investigations of the structural behaviour of ammonia hemihydrate as a function of P and T. The indications of earlier studies [Ma et al. RSC Adv. 2, 4290 (2012)] that the DMA structure could be produced by compression of ammonia hemihydrate above 20 GPa at ambient temperature are confirmed. In addition, the DMA structure was found to form reversibly both from the melt, and on warming of ammonia hemihydrate phase-II, in the pressure range between 4 and 8 GPa. The route used to make the DMA structure from ammonia mono-and di-hydrates-compression at 170 K to 6 GPa followed by warming to ambient temperature-was found not to produce the DMA structure for ammonia hemihydrate. These results provide the first strong evidence that DMA is a thermodynamically stable form. A high-pressure phase diagram for ammonia hemihydrate is proposed which has importance for planetary modelling. (C) 2015 AIP Publishing LLC.
机译:氨水合物的无序分子合金相(DMA)[J.S. Loveday和R. J. Nelmes,物理学。牧师83,4329(1999)]的独特之处在于,它在体心立方晶格的分子位置上具有氨和水的置换障碍。尽管已经在氨二水合物和一水合物组合物中观察到这种结构,但是在氨半水合物体系中尚未最终观察到该结构。这项工作提出了关于半水合氨的结构行为随P和T的变化的研究。 RSC Adv。 [2,4290(2012)]证实了DMA结构可以通过在环境温度下压缩20 GPa以上的氨半水合物来产生。另外,发现DMA结构在4GPa和8GPa之间的压力范围内从熔体和在氨半水合物相II加热时可逆地形成。发现用于使DMA结构从氨的一水合物和二水合物在170 K压缩到6 GPa,然后加热到环境温度的路线并未产生半水氨的DMA结构。这些结果提供了第一个有力的证据,证明DMA是热力学稳定的形式。提出了半水氨的高压相图,该图对于行星建模具有重要意义。 (C)2015 AIP Publishing LLC。

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