论文标题

在大压缩下银的氟化物

Fluorides of silver under large compression

论文作者

Kurzydłowski, Dominik, Derzsi, Mariana, Zurek, Eva, Grochala, Wojciech

论文摘要

使用理论方法,已将银氟相图被审查为外部压力的函数。我们的结果表明,在环境和低压下,两个含有Ag+和Ag2+阳离子(AG3F4和AG2F3)的新型化学计量法在热力学上是稳定的。在环境压力条件下,两者都被计算为磁半导体。对于包含AG2+和AG3+的AG2F5,我们发现在整个压力诱导的相变序列中,坚固的1D抗铁磁耦合被保留在高达65 GPA的过程中。我们的计算表明,在其稳定性的整个压力范围内,混合价氟化物在费米水平上保留有限的带隙。我们还确认将AGF4合成为高压下的顺磁化合物的可能性。我们的结果表明,该化合物在其热力学稳定性区域具有金属。最后,我们对高压银混合价化合物的热力学稳定性提出了一般考虑。

The silver-fluorine phase diagram has been scrutinized as a function of external pressure using theoretical methods. Our results indicate that two novel stoichiometries containing Ag+ and Ag2+ cations (Ag3F4 and Ag2F3) are thermodynamically stable at ambient and low pressure. Both are computed to be magnetic semiconductors at ambient pressure conditions. For Ag2F5, containing both Ag2+ and Ag3+, we find that strong 1D antiferromagnetic coupling is retained throughout the pressure-induced phase transition sequence up to 65 GPa. Our calculations show that throughout the entire pressure range of their stability the mixed valence fluorides preserve a finite band gap at the Fermi level. We also confirm the possibility of synthesizing AgF4 as a paramagnetic compound at high pressure. Our results indicate that this compound is metallic in its thermodynamic stability region. Finally, we present general considerations on the thermodynamic stability of mixed valence compounds of silver at high pressure.

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