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Evidence of polymorphic transformations of Sn under high pressure

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【作者】 敬秋民曹玉红张毅李守瑞何强侯琪玥刘盛刚柳雷毕延耿华运吴强

【Author】 Qiu-Min Jing;Yu-Hong Cao;Yi Zhang;Shou-Rui Li;Qiang He;Qi-Yue Hou;Sheng-Gang Liu;Lei Liu;Yan Bi;Hua-Yun Geng;Qiang Wu;National Laboratory of Shock Wave and Detonation Physics,Institute of Fluid Physics,China Academy of Engineering Physics;Metrology Testing Center for China Academy of Engineering Physics;

【机构】 National Laboratory of Shock Wave and Detonation Physics,Institute of Fluid Physics,China Academy of Engineering PhysicsMetrology Testing Center for China Academy of Engineering Physics

【摘要】 The high-pressure polymorphs and structural transformation of Sn were experimentally investigated using angledispersive synchrotron x-ray diffraction up to 108.9 GPa. The results show that at least at 12.8 GPa β-Sn→bct structure transformation was completed and no two-phase coexistence was found. By using a long-wavelength x-ray, we resolved the diffraction peaks splitting and discovered the formation of a new distorted orthorhombic structure bco from the bct structure at 31.8 GPa. The variation of the lattice parameters and their ratios with pressure further validate the observation of the bco polymorph. The bcc structure appears at 40.9 GPa and coexists with the bco phase throughout a wide pressure range of40.9 GPa–73.1 GPa. Above 73.1 GPa, only the bcc polymorph is observed. The systematically experimental investigation confirms the phase transition sequence of Sn as β-Sn→bct→bco→ bco + bcc→bcc upon compression to 108.9 GPa at room temperature.

【Abstract】 The high-pressure polymorphs and structural transformation of Sn were experimentally investigated using angledispersive synchrotron x-ray diffraction up to 108.9 GPa. The results show that at least at 12.8 GPa β-Sn→bct structure transformation was completed and no two-phase coexistence was found. By using a long-wavelength x-ray, we resolved the diffraction peaks splitting and discovered the formation of a new distorted orthorhombic structure bco from the bct structure at 31.8 GPa. The variation of the lattice parameters and their ratios with pressure further validate the observation of the bco polymorph. The bcc structure appears at 40.9 GPa and coexists with the bco phase throughout a wide pressure range of40.9 GPa–73.1 GPa. Above 73.1 GPa, only the bcc polymorph is observed. The systematically experimental investigation confirms the phase transition sequence of Sn as β-Sn→bct→bco→ bco + bcc→bcc upon compression to 108.9 GPa at room temperature.

【基金】 Project supported by the National Natural Science Foundation of China(Grant Nos.11304294 and 11274281);the Science Fund from the National Laboratory of Shock Wave and Detonation Physics of China(Grant Nos.9140C670201140C67281 and 9140C670102150C67288)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2016年12期
  • 【分类号】O521
  • 【下载频次】14
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