Structural and motional study of pyridinium tetrahalogenoantimonates(III) by means of nuclear quadrupole resonance spectroscopy
Abstract
The temperature dependences of 35Cl and 81Br nuclear quadrupole resonance (n.q.r.) frequencies, 35Cl nuclear quadrupolar spin–lattice relaxation time T1, and the 1H n.m.r. second moment were observed for [C5H5NH][SbCl4], [C5H5NH][SbBr4], and their N-deuteriated analogues. The β phase of the chloride exhibited a second-order transition at 232 K similar to the phase transition of the bromide at 253 K. The phase transition points of the deuteriated compounds are lower by ca. 4 K for the chloride and ca. 5 K for the bromide. A minimum in 35Cl T1 was observed at about 125 K for the chloride and its deuteriated compound. This minimum is responsible for the reorientation of the pyridinium cation.