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The p-sc structure in phosphorus: bringing order to the high pressure phases of group 15 elements

Authors :
Demetrio Scelta
Adhara Baldassarre
Kamil Dziubek
Manuel Serrano-Ruiz
Roberto Bini
Andrew B. Cairns
Maurizio Peruzzini
Matteo Ceppatelli
Source :
Chemical Communications, Chemical communications (Lond., 1996, Print) 54 (2018): 10554–10557. doi:10.1039/c8cc03013h, info:cnr-pdr/source/autori:Scelta D.; Baldassarre A.; Serrano-Ruiz M.; Dziubek K.; Cairns A.B.; Peruzzini M.; Bini R.; Ceppatelli M./titolo:The p-sc structure in phosphorus: Bringing order to the high pressure phases of group 15 elements/doi:10.1039%2Fc8cc03013h/rivista:Chemical communications (Lond., 1996, Print)/anno:2018/pagina_da:10554/pagina_a:10557/intervallo_pagine:10554–10557/volume:54
Publication Year :
2018
Publisher :
Royal Society of Chemistry (RSC), 2018.

Abstract

Black phosphorus was studied by state-of-the-art synchrotron X-ray diffraction in a Diamond Anvil Cell during room temperature compression in the presence of He, H2, N2 and Daphne Oil 7474. The data demonstrate that the existence of the pseudo simple-cubic (p-sc) structure above 10.5 GPa is an intrinsic feature of P independent from the pressure transmitting medium. In the case of He, the pressure evolution of the lattice parameters and unit cell volume of P across the A17, A7 and p-sc structures was obtained and the corresponding EOS derived, providing a deeper insight on the recently reported p-sc structure. The results presented in this letter highlight the key role of the s-p orbital mixing in the formation and stabilization of the p-sc structure up to ~30 GPa, solving apparent contradictions emerging from previous literature and finally bringing order to the sequence of the high pressure A7 layered structure in group 15 elements.

Details

ISSN :
1364548X and 13597345
Volume :
54
Database :
OpenAIRE
Journal :
Chemical Communications
Accession number :
edsair.doi.dedup.....3d66660efd5321dd587e8c8cc555b4fc
Full Text :
https://doi.org/10.1039/c8cc03013h