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Materials with graphenelike layers attract tremendous attention due to their electronic structures and superconducting properties. In this study, we synthesized LaP₂ polycrystalline and observed a superconducting transition at around 30 GPa. The critical temperature T₂ increases monotonically with pressure, which is nearing saturation and reaches 7. 8 K at 78 GPa. The synchrotron x-ray diffraction experiments confirm the superconducting transition originates from a structure transition to the P6/mmm phase under high pressure, suggesting the observation of graphenelike phosphorus layers in transition-metal phosphides. By first-principles calculations, we provide more evidence for the stability of the graphenelike phosphorus layers in LaP₂. Our findings are helpful for the understanding of the LaP₂ phase diagram under high pressure and could shed light on the research of unique structures in transition-metal phosphides under high pressure.
Zhang et al. (Fri,) studied this question.