Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1406015 | Journal of Molecular Structure | 2013 | 6 Pages |
Abstract
The 35Cl nuclear quadrupole resonance frequencies and spin-lattice relaxation times for (NH4)2RuCl6, (ND4)2RuCl6, (NH4)2SnCl6, and (ND4)2SnCl6 were measured in the temperature range 4.2-300Â K. In these four compounds, it was confirmed that no phase transition occurs in the observed temperature range. At 4.2Â K, discrepancies of the NQR frequency between non-deuterated and deuterated compounds, which are attributed to the difference in the spatial distributions of hydrogen (deuterium) atoms in the ground states of the rotational motion of ammonium ion, reached to 24Â kHz and 23Â kHz for the ruthenate compounds and the stannate compounds, respectively. The separation between the ground and the first excited states of the rotational motion of the ammonium ion was estimated to be 466Â JÂ molâ1 and 840Â JÂ molâ1 for (ND4)2RuCl6 and (NH4)2RuCl6, respectively, by least-square fitting calculations of temperature dependence of the NQR frequency. For (ND4)2SnCl6 and (NH4)2SnCl6, these quantities were estimated to be 501Â JÂ molâ1 and 1544Â JÂ molâ1, respectively. It was clarified that the T1 minimum, which has been observed for the stannate compounds at around 60Â K as a feature of the temperature dependence, was dependent on a method of sample preparation. It is concluded that the minimum is not an essential character of the ammonium hexachlorostannate(IV) since the crystals prepared in strong acid condition to prevent a partial substitution of chlorine atoms by hydroxyl groups, did not show such T1 minimum.
Related Topics
Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Yoshio Kume, Daiki Amino, Tetsuo Asaji,