English

Two polymorphs of a new intermetallic Ce$_2$Rh$_2$Ga -- crystal structure and physical properties

Strongly Correlated Electrons 2020-05-12 v1 Materials Science

Abstract

We report on the synthesis and physical properties of the new ternary intermetallic Ce2_2Rh2_2Ga. Its formation and dimorphism have been investigated by powder and single crystal X-ray diffractometry, as well as by differential thermal analyses. LT- and HT-Ce2_2Rh2_2Ga can be obtained by the chosen respective thermal treatment. The high-temperature form (HT-Ce2_2Rh2_2Ga), stable above 864(5){\deg}C, is orthorhombic La2Ni3-type [Cmce, oS20, a=5.851(2) {\AA}, b=9.618 (2) {\AA}, c=7.487 (2) {\AA}, V=421.3(2) {\AA}3]; the low-temperature form (LT-Ce2_2Rh2_2Ga), stable below this temperature, is monoclinic Pr2Co2Al- (Ca2Ir2Si-) type [C2/c, mS20, a=10.0903(6) A, b=5.6041(3) A, c=7.8153(4) A, beta=104.995(3) degrees, V=426.88(4) A3]. The magnetic measurements were conducted on two different samples, namely on the LT-Ce2_2Rh2_2Ga and the other on the HT-Ce2_2Rh2_2Ga sample. The HT-Ce2_2Rh2_2Ga compound is found to exhibit a phase transition at 128.5 K. By virtue of the sharp peak anomaly in the temperature dependence of the magnetic susceptibility this phase transition is plausibly of antiferromagnetic origin, but occurs at a remarkably high temperature compared to what is typical for Ce binary and ternary compounds. LT- Ce2_2Rh2_2Gaa has a ground state of ferromagnetic nature which sets in at a paramagnetic-to-ferromagnetic phase transition at 5.2 K.

Keywords

Cite

@article{arxiv.2005.05095,
  title  = {Two polymorphs of a new intermetallic Ce$_2$Rh$_2$Ga -- crystal structure and physical properties},
  author = {Sergey Nesterenko and Anna Tursina and Mathieu Pasturel and Sindisiwe Xhakaza and André Strydom},
  journal= {arXiv preprint arXiv:2005.05095},
  year   = {2020}
}