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35 Cl NQR frequency and spin lattice relaxation time in 3,4‐dichlorophenol as a function of pressure and temperature
Author(s) -
Ramu L.,
Ramesh K. P.,
Chandramani R.
Publication year - 2013
Publication title -
magnetic resonance in chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.483
H-Index - 72
eISSN - 1097-458X
pISSN - 0749-1581
DOI - 10.1002/mrc.3885
Subject(s) - chemistry , 2,4 dichlorophenol , spin–lattice relaxation , relaxation (psychology) , nuclear magnetic resonance , analytical chemistry (journal) , nuclear quadrupole resonance , chromatography , physics , genetics , bacteria , biology , psychology , social psychology
The pressure dependences of 35 Cl nuclear quadrupole resonance (NQR) frequency, temperature and pressure variation of spin lattice relaxation time ( T 1 ) were investigated in 3,4‐dichlorophenol. T 1 was measured in the temperature range 77–300 K. Furthermore, the NQR frequency and T 1 for these compounds were measured as a function of pressure up to 5 kbar at 300 K. The temperature dependence of the average torsional lifetimes of the molecules and the transition probabilities W 1 and W 2 for the Δ m = ±1 and Δ m = ±2 transitions were also obtained. A nonlinear variation of NQR frequency with pressure has been observed and the pressure coefficients were observed to be positive. A thermodynamic analysis of the data was carried out to determine the constant volume temperature coefficients of the NQR frequency. An attempt is made to compare the torsional frequencies evaluated from NQR data with those obtained by IR spectra. On selecting the appropriate mode from IR spectra, a good agreement with torsional frequency obtained from NQR data is observed. The previously mentioned approach is a good illustration of the supplementary nature of the data from IR studies, in relation to NQR studies of compounds in solid state. Copyright © 2012 John Wiley & Sons, Ltd.