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Prediction of high-Tc superconductivity under submegabar pressure in ternary actinium borohydrides

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arxiv 2411.19014 v1 pith:XE23NRYS submitted 2024-11-28 cond-mat.supr-con

Prediction of high-Tc superconductivity under submegabar pressure in ternary actinium borohydrides

classification cond-mat.supr-con
keywords pressuresubmegabarsuperconductivityternaryac-b-hatomscompoundshigh
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Ternary hydrides are considered as the ideal candidates with high critical temperature (Tc) stabilized at submegabar pressure, evidenced by the recent discoveries in LaBeH8 (110 K at 80 GPa) and LaB2H8 (106 K at 90 GPa). Here, we investigate the crystal structures and superconductivity of an Ac-B-H system under pressures of 100 and 200 GPa by using an advanced structure method combined with first-principles calculations. As a result, nine stable compounds were identified, where B atoms are bonded with H atoms in the formation with diverse BHx motifs, e.g., methanelike (BH4), polythenelike, (BH2)n,andBH6 octahedron. Among them, seven Ac-B-H compounds were found to become superconductive. In particular, AcBH7 was estimated to have a Tc of 122 K at 70 GPa. Our in-depth analysis reveals that the B-H interactions in the BH6 units play a key role in its high superconductivity and stability at submegabar pressure. Our current results provide a guidance for future experiments to synthesize ternary hydride superconductors with high-Tc at moderate pressure.

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