English

Structure and thermodynamic properties of a weakly-coupled antiferromagnetic spin-1/2 chain compound (C5H12N)CuBr3

Strongly Correlated Electrons 2014-04-11 v1

Abstract

Single crystals of a metal organic complex \ce{(C5H12N)CuBr3} (\ce{C5H12N} = piperidinium, pipH for short) have been synthesized and the structure was determined by single-crystal X-ray diffraction. \ce{(pipH)CuBr3} crystallizes in the monoclinic group CC2/cc. Edging-sharing \ce{CuBr5} units link to form zigzag chains along the cc axis and the neighboring Cu(II) ions with spin-1/2 are bridged by bi-bromide ions. Magnetic susceptibility data down to 1.8 K can be well fitted by the Bonner-Fisher formula for antiferromagnetic spin-1/2 chain, giving the intrachain magnetic coupling constant JJ \sim 17 K. At zero field, \ce{(pipH)CuBr3} shows three-dimensional (3D) order below TNT_N = 1.68 K. Calculated by the mean-field theory, the interchain coupling constant JJ' = 0.65 K is obtained and the ordered magnetic moment m0m_0 is about 0.20 μB\mu_B. This value of m0m_0 makes \ce{(pipH)CuBr3} a rare compound suitable to study the dimensional crossover problem in magnetism, since both 3D order and one-dimensional (1D) quantum fluctuations are prominent. In addition, specific heat measurements reveal two successive magnetic transitions with lowering temperature when external field HH \geq 3 T is applied along the aa' axis. The HH - TT phase diagram of \ce{(pipH)CuBr3} is roughly constructed. The interplay between exchange interactions, dimensionality, Zeeman energy and possible Dzyaloshinkii-Moriya interaction should be the driving force for the multiple phase transitions.

Keywords

Cite

@article{arxiv.1312.3209,
  title  = {Structure and thermodynamic properties of a weakly-coupled antiferromagnetic spin-1/2 chain compound (C5H12N)CuBr3},
  author = {B. Y. Pan and Y. Wang and L. J. Zhang and S. Y. Li},
  journal= {arXiv preprint arXiv:1312.3209},
  year   = {2014}
}

Comments

5 pages, 4 figures