<i>Ab initio </i>study of pressure-driven phase transition in FePS<sub>3</sub> and FePSe<sub>3</sub>
ORAL
Abstract
In spite of recent findings about the pressure-driven insulator-to-metal phase transition, and emerging superconductivity of FePS3 and FePSe3, the knowledge about the atomic structures of them is still vague. Here, we investigate the pressure-driven structural phase transitions of FePS3 and FePSe3 from 0 to 35 GPa by using ab initio calculations. We find that FePS3 B-I structure transforms to FePS3 B-II phase at about 5 GPa. Then above 17 GPa, FePS3 B-III phase becomes energetically favored. For FePSe3, with increasing pressure, FePSe3 transforms to B-II phase at around 6 GPa and further to B-III phase at about 15 GPa. Our calculation results are consistent with experimentally observed high-pressure induced cell volume collapse, spin-crossovers and insulator-metal transition in FePS3 and FePSe3, which shed new light on understanding the high-pressure physics and phase transitions of FePS3 and FePSe3.
*This study is supported by the National Basic Research Programs of China with grant No. 2016YFA0300901 and the National Science Foundation of China with grant Nos. 11974105, 11604092, 11774429. The computational resources were provided by the supercomputer TianHe in Changsha, China. We also thank Chaoyu He (Xiangtan University) for very useful discussions .
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Presenters
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Yexin Feng
- Hunan University