Stable Rb-B compounds under high pressure

نویسندگان

چکیده

As a frontier issue of physics and material, the structures related properties borides have been extensively investigated in fundamental science. The search for pressure-induced stable compounds has become feasible approach to acquire that are inaccessible at atmospheric pressure. Combined with state-of-the-art swarm intelligence structure prediction first-principles calculations, we systematically explored Rb-B system uncovered series unprecedented RbB, ${\mathrm{Rb}}_{2}{\mathrm{B}}_{3}$, ${\mathrm{RbB}}_{3}$, ${\mathrm{RbB}}_{6}$, ${\mathrm{RbB}}_{8}$, ${\mathrm{RbB}}_{10}$ under high It is found catenation boron evolves from linear chain layered sheets, clusterlike units, further three-dimensional tunnel increasing content. Among them, ${\mathrm{RbB}}_{6}$ ${\mathrm{RbB}}_{8}$ expected phonon-mediated superconductors ${T}_{c}$ \ensuremath{\sim}12 K superhard material hardness \ensuremath{\sim}37 GPa ambient pressure, respectively. Additionally, suitable precursor obtaining superconducting $o\text{\ensuremath{-}}{\mathrm{B}}_{16}$ allotrope by removing Rb due its better stability than isomorphic ${\mathrm{SrB}}_{8}$. current results provide insights into design unforeseen illustrate intriguing B-B bonding features originating \ensuremath{\rightarrow} B charge transfer pressures.

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ژورنال

عنوان ژورنال: Physical review research

سال: 2023

ISSN: ['2643-1564']

DOI: https://doi.org/10.1103/physrevresearch.5.013130