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Structural evolution of iodine on approach to the monatomic state

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arxiv 2301.05657 v1 pith:Q32CMG4X submitted 2023-01-13 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords iodinemolecularphasedynamicallyformationmonatomicstructureanvil
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We applied single-crystal X-ray diffraction and Raman spectroscopy in a diamond anvil cell up to 36 GPa and first principles theoretical calculations to study the molecular dissociation of solid iodine at high pressure. Unlike previously reported, we find that the familiar Cmce molecular phase transforms to a Cmc21 molecular structure at 16 GPa, and then to an incommensurate dynamically disordered Fmmm(00{\gamma})s00 structure at 20 GPa, which can be viewed as a stepwise formation of polymeric zigzag chains of three iodine atoms following by the formation of the dynamically dissociated, incommensurately modulated i-Fmmm phase, and the truly monatomic Immm phase at higher pressures.

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