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首页> 外文期刊>The Journal of Chemical Physics >Pressure induced dimer to ionic insulator and metallic structural changes in Al_2Br_6
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Pressure induced dimer to ionic insulator and metallic structural changes in Al_2Br_6

机译:压力诱导的二聚体对离子绝缘子的影响以及Al_2Br_6的金属结构变化

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摘要

High-pressure phase transitions in Al_2Br_6 were theoretically investigated using first principles density functional methods. A structural transformation from the initial molecular solid phase to a planar polymeric phase is predicted near 0.4 GPa that is accompanied with a substantial volume drop. A unique feature of this phase transition is that the hcp lattice of Br atoms remains unchanged during the transition, whereas the Al atoms are displaced from the original tetrahedral sites to the octahedral sites. The calculated phonon spectra indicate that the predicted phase is mechanically stable at 1 atm, and therefore it may be quench-recovered to ambient conditions and exist as a metastable form. A second structural transformation is predicted to occur at around 80 GPa, and also at this point, the AlBr_3 reaches a metallic state. The electronic structure of the metallic phase features soft phonon modes and Fermi surface nesting in the Brillouin zone, which leads to localized electron-phonon coupling. By comparing with the experimental data available for high-pressure BI_3, the superconducting critical temperature T_c for the metallic phase of AlBr_3 is estimated to be at 0.5 K or above.
机译:理论上使用第一原理密度泛函方法研究了Al_2Br_6中的高压相变。预测从最初的分子固相到平面聚合物相的结构转变接近0.4 GPa,伴随着大量的体积下降。这种相变的独特之处在于,Br原子的hcp晶格在过渡过程中保持不变,而Al原子则从原始的四面体位置转移到八面体位置。计算得出的声子光谱表明,预测的相在1个大气压下机械稳定,因此可以将其淬灭并恢复至环境条件,并以亚稳形式存在。预计第二个结构转变将在80 GPa左右发生,并且此时AlBr_3达到金属态。金属相的电子结构在布里渊区具有软声子模式和费米表面嵌套,从而导致局部电子-声子耦合。通过与可用于高压BI_3的实验数据进行比较,估计AlBr_3金属相的超导临界温度T_c为0.5 K或更高。

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