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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Liquid gallium in confined droplets under high-temperature and high-pressure conditions
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Liquid gallium in confined droplets under high-temperature and high-pressure conditions

机译:高温高压条件下密闭液滴中的液态镓

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Phase transitions and the local structure of micrometric droplets of liquid gallium under pressure were studied by combining extended x-ray absorption fine structure, single-energy x-ray absorption detection (SEXAD), and energy-scanning x-ray diffraction (ESXD). Measurements were performed in a range of pressures and temperatures of 0-6.7 GPa and 298-440 K, respectively. The samples for the high-pressure measurements were obtained by using an emulsion of gallium into epoxy resin, a procedure previously developed by the authors. The distribution of droplets was fully characterized by scanning electron microscopy. We found that the liquid can be kept in a metastable state well beyond the liquid-solid coexistence line (1.9 GPa at 300 K). Considering both the ESXD patterns and the SEXAD scans, we infer that the quantity of crystallized gallium droplets increases as a function of pressure, while no sign of crystallization is observed up to 2.7 GPa. The structural and crystallization properties of Ga emulsions, including the determination of the short-range radial distribution function, were measured by XAS in an extended range of pressures and temperatures, putting to a test the possible existence of different Ga-liquid polymorphs.
机译:通过结合扩展X射线吸收精细结构,单能X射线吸收检测(SEXAD)和能量扫描X射线衍射(ESXD),研究了压力下液态镓微滴的相变和局部结构。在分别为0-6.7 GPa和298-440 K的压力和温度范围内进行测量。通过使用镓在环氧树脂中的乳化液获得用于高压测量的样品,这是作者先前开发的程序。液滴的分布通过扫描电子显微镜充分表征。我们发现液体可以保持在亚稳状态,远远超过液固共存线(在300 K时为1.9 GPa)。考虑到ESXD模式和SEXAD扫描,我们推断出,结晶的镓液滴的数量随压力的增加而增加,而在2.7 GPa时没有观察到结晶的迹象。通过XAS在扩展的压力和温度范围内,通过XAS测量了Ga乳液的结构和结晶性能,包括确定短程径向分布函数,从而测试了可能存在的不同Ga-液体多晶型物。

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