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Article Dans Une Revue Nature Communications Année : 2024

Hydrogen bond symmetrisation in D$_2$O ice observed by neutron diffraction

Kazuki Komatsu
Takanori Hattori
Keishiro Yamashita
Hiroki Kobayashi
Tetsuo Irifune
Toru Shinmei
Hiroyuki Kagi

Résumé

Hydrogen bond symmetrisation is the phenomenon where a hydrogen atom is located at the centre of a hydrogen bond. Theoretical studies predict that hydrogen bonds in ice VII eventually undergo symmetrisation upon increasing pressure, involving nuclear quantum effect with significant isotope effect and drastic changes in the elastic properties through several intermediate states with varying hydrogen distribution. Despite numerous experimental studies conducted, the location of hydrogen and hence the transition pressures reported up to date remain inconsistent. Here we report the atomic distribution of deuterium in D$_2$O ice using neutron diffraction above 100 GPa and observe the transition from a bimodal to a unimodal distribution of deuterium at around 80 GPa. At the transition pressure, a significant narrowing of the peak widths of 110 is also observed, attributed to the structural relaxation by the change of elastic properties.
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Dates et versions

hal-04643287 , version 1 (10-07-2024)

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Citer

Kazuki Komatsu, Takanori Hattori, Stefan Klotz, Shinichi Machida, Keishiro Yamashita, et al.. Hydrogen bond symmetrisation in D$_2$O ice observed by neutron diffraction. Nature Communications, 2024, 15 (1), pp.5100. ⟨10.1038/s41467-024-48932-8⟩. ⟨hal-04643287⟩
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