Anomalous bond length behavior and a new solid phase of bromine under pressure

The behavior of diatomic molecular solids under pressure have attracted great interest and been extensively studied. Under ambient pressure, the structure of bromine is known to be a molecular phase (phase I). With increasing pressure, it transforms into an incommensurate phase (phase V) before even...

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Veröffentlicht in:Scientific reports 2016-05, Vol.6 (1), p.25649-25649, Article 25649
Hauptverfasser: Wu, Min, Tse, John S., Pan, Yuanming
Format: Artikel
Sprache:eng
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Zusammenfassung:The behavior of diatomic molecular solids under pressure have attracted great interest and been extensively studied. Under ambient pressure, the structure of bromine is known to be a molecular phase (phase I). With increasing pressure, it transforms into an incommensurate phase (phase V) before eventually to a monoatomic phase (phase II). However, between phases I and V, the interatomic distance was found to first increase with pressure and then decreased abruptly. This anomalous bond length behavior is accompanied by the splitting of the Raman bands. These phenomena have not been resolved. Here we suggest a new solid phase that explains the Raman spectra. Furthermore, the anomalous bond length behavior is found to be the result of subtle second neighbor intermolecular interactions and is an intrinsic property of bromine in molecular phases.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep25649