Anzellini Simone, Monteseguro Virginia, Bandiello Enrico, Dewaele Agnès, Burakovsky Leonid, Errandonea Daniel
Diamond Light Source Ltd, Diamond House, Harwell Science Campus, Didcot, Oxfordshire, OX11 0DE, UK.
Departamento de Física Aplicada - Instituto de Ciencia de Materiales, Matter at High Pressure (MALTA) Consolider Team, Universidad de Valencia, Edificio de Investigación, C/Dr. Moliner 50, Burjassot, 46100, Valencia, Spain.
Sci Rep. 2019 Sep 10;9(1):13034. doi: 10.1038/s41598-019-49676-y.
In this work, the melting line of platinum has been characterized both experimentally, using synchrotron X-ray diffraction in laser-heated diamond-anvil cells, and theoretically, using ab initio simulations. In the investigated pressure and temperature range (pressure between 10 GPa and 110 GPa and temperature between 300 K and 4800 K), only the face-centered cubic phase of platinum has been observed. The melting points obtained with the two techniques are in good agreement. Furthermore, the obtained results agree and considerably extend the melting line previously obtained in large-volume devices and in one laser-heated diamond-anvil cells experiment, in which the speckle method was used as melting detection technique. The divergence between previous laser-heating experiments is resolved in favor of those experiments reporting the higher melting slope.
在这项工作中,铂的熔点已通过实验和理论两种方法进行了表征。实验上,使用激光加热金刚石对顶砧中的同步加速器X射线衍射;理论上,则使用从头算模拟。在所研究的压力和温度范围内(压力在10吉帕至110吉帕之间,温度在300开尔文至4800开尔文之间),仅观察到铂的面心立方相。两种技术获得的熔点结果吻合良好。此外,所得结果与先前在大体积装置和一个使用散斑法作为熔化检测技术的激光加热金刚石对顶砧单元实验中获得的熔点线相符,并大大扩展了该熔点线。先前激光加热实验之间的分歧得到了解决,支持了那些报告较高熔化斜率的实验。