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Crystal structure of NaNO3 at high pressure
Authors:T Fujimura  H Iwasaki  S Sasaki  R-Z Sha
Institution:1. Photan Factory, National Laboratory for High Energy Physics Tsukuba , Ibaraki, 305, Japan;2. Technical Research Division , Kawasaki Steel Corporation , Chiba, 260, Japan;3. Photan Factory, National Laboratory for High Energy Physics Tsukuba , Ibaraki, 305, Japan;4. Research Laboratory of Engineering Materials , Tokyo Institute of Technology , Yokohama, 227, Japan;5. Harbin Institute of Technology, Center of Physical and Chemical Analysis , Harbin, China
Abstract:Abstract

Effect of high pressure on the crystal structure of rhombohedral NaNO3 was investigated by X-ray diffraction of single crystals mounted in a miniature diamond-anvil cell on synchrotron radiation source. Diffraction intensity measurements were made at three pressures across a suggested transition pressure 4.3 GPa. No change was observed in an overall distribution of reflections in the reciprocal space with increasing pressure, but there was a systematic variation in diffraction intensity for particular groups of reflections. An analysis based on the structure factor calculation showed that a structure change induced by pressure is mainly a rotation of the nitrate groups in the alternate layers along the threefold axis in opposite directions. Least-squares refinement of the atomic positional parameters yielded the angle of the rotation to be 4.3 and 7.0 deg at pressures of 4.4 and 5.0 GPa, respectively. It has also been shown that the positions of the sodium and nitrogen atoms are slightly displaced along the axis, resulting in the formation of dipoles in the high pressure phase.
Keywords:NaNO3  Phase transition  Synchrotron Radiation
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