## Abstract ^35^Cl nuclear quadrupole resonance (NQR) was studied in 2,4‐dichlorobenzyl alcohol (2,4‐DCBA) and 2,6‐dichlorobenzyl alcohol (2,6‐DCBA). The NQR spectrum of 2,4‐DCBA show four lines and that of 2,6‐DCBA two lines. The temperature dependence of the NQR frequencies from 77 K up to the re
35Cl nuclear quadrupole resonance (NQR) study of ion mobility in (ND4)2PtCl4
✍ Scribed by A Birczyński; C Dimitropoulos; Z.T Lalowicz
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 327 KB
- Volume
- 339
- Category
- Article
- ISSN
- 0921-4526
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✦ Synopsis
35
Cl nuclear quadrupole resonance was applied to study molecular dynamics in ðND 4 Þ 2 PtCl 4 : The spin-lattice relaxation time T 1Q ; the quadrupole resonance frequency n Q ; the line width dn and the integrated intensity T R F ðnÞ dn of the resonance line F ðnÞ multiplied by the temperature T to compensate for the Curie law effect were measured in a wide temperature range 12:4 KoTo425 K: Effects due to cation and anion mobility were clearly seen and their contributions are disentangled. Domain structure and diverse mobility of ammonium ions in the ordered phase are the basic assumptions underlying the fitting of the experimental data. An order-disorder phase transition takes place at 148 K and appears visible in all measured quantities. Unrestricted mobility of ammonium ions dominates above the phase transition. At higher temperatures, mobility of the planar PtCl 2À 4 ions, first torsional oscillations and then reorientational jumps, becomes detectable.
📜 SIMILAR VOLUMES
A detailed description of the diverse mobility of the ND4+ ions in the low-temperature ordered phase of (ND4)2PtCl4 is developed on the basis of single-crystal deuteron NMR spectra and site-selective T1 measurements. The ordered phase of (ND4)2PtCl4 consists of two kinds of domains in which the orie