Incipient ferroelectricity of water molecules confined to nano-channels of beryl

نویسندگان

  • B. P. Gorshunov
  • V. I. Torgashev
  • E. S. Zhukova
  • V. G. Thomas
  • M. A. Belyanchikov
  • C. Kadlec
  • F. Kadlec
  • M. Savinov
  • T. Ostapchuk
  • J. Petzelt
  • J. Prokleška
  • P. V. Tomas
  • E. V. Pestrjakov
  • D. A. Fursenko
  • G. S. Shakurov
  • A. S. Prokhorov
  • V. S. Gorelik
  • L. S. Kadyrov
  • V. V. Uskov
  • R. K. Kremer
  • M. Dressel
چکیده

Water is characterized by large molecular electric dipole moments and strong interactions between molecules; however, hydrogen bonds screen the dipole-dipole coupling and suppress the ferroelectric order. The situation changes drastically when water is confined: in this case ordering of the molecular dipoles has been predicted, but never unambiguously detected experimentally. In the present study we place separate H2O molecules in the structural channels of a beryl single crystal so that they are located far enough to prevent hydrogen bonding, but close enough to keep the dipole-dipole interaction, resulting in incipient ferroelectricity in the water molecular subsystem. We observe a ferroelectric soft mode that causes Curie-Weiss behaviour of the static permittivity, which saturates below 10 K due to quantum fluctuations. The ferroelectricity of water molecules may play a key role in the functioning of biological systems and find applications in fuel and memory cells, light emitters and other nanoscale electronic devices.

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عنوان ژورنال:

دوره 7  شماره 

صفحات  -

تاریخ انتشار 2016