Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5390744 | Chemical Physics Letters | 2006 | 4 Pages |
Abstract
The EPR zero-field splitting parameters and structural distortion of Mn2+-doped (CH3)4NCdCl3 crystal in high-temperature phases have been studied by diagonalizing the complete energy matrices. The zero-field splitting parameters D and (a â F) are demonstrated to be negative and positive, respectively, and obtain a reasonable explanation together. Simultaneously, the distortion magnitude of local lattice structure around the Mn2+ ion in this crystal is determined, namely, ÎR = â0.13 Ã
and Îθ = 2.975° for T = 124 K; ÎR = â0.12 Ã
and Îθ = 2.610° for T = 297 K; ÎR = â0.26 Ã
and Îθ = 2.870° for T = 573 K. From the structural distortion, we deduce that a new structural phase transition should occur to the (CH3)4NCdCl3 crystal at temperatures ranging from 297 to 573 K. This is also in agreement with recent differential scanning calorimetric measurements.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Die Dong, Kuang Xiao-Yu, Guo Jian-Jun, Wang Hui, Zhou Kang-Wei,