Liu L G, Bassett W A, Liu M S
Science. 1973 Apr 20;180(4083):298-9. doi: 10.1126/science.180.4083.298.
An x-ray diffractiotn study of thulium at room temperature and high pressure by means of a diamond-anvil press has shown that thulium transforms from a hexagonal close-packed structure to the samarium type, as other rareearth elements (gadolinium, terbium, dysprosium, and holmium) do. Unlike the other rare-earth elements, thulium (hexagonal close-packed) has an axial ratio (c/a) that is independent of pressure within experimental error and the transition is reversible. The transition occurs with increasing pressure in the range of 60 to 116 kilobars. The lattice paralieters of the samarium-type phase of thulium at about 116 kilobars are a = 3.327 +/- 0.005 angstroms and c = 23.48 +/- 0.04 angstroms, and the volume change at the transition is estimated to be - 0.5 percent of the volume of the hexagonal close-packed phase at the transition.
利用金刚石对顶砧压力机在室温及高压下对铥进行的X射线衍射研究表明,铥如同其他稀土元素(钆、铽、镝和钬)一样,从六方密堆积结构转变为钐型结构。与其他稀土元素不同的是,铥(六方密堆积)的轴比(c/a)在实验误差范围内与压力无关,且这种转变是可逆的。转变发生在60至116千巴的压力范围内。在约116千巴时铥的钐型相的晶格参数为a = 3.327±0.005埃,c = 23.48±0.04埃,且转变时的体积变化估计为转变时六方密堆积相体积的 - 0.5%。