Hajime Yamamoto, Keigo Ochi, Takuya Aoyama, Kenji Ishii, Daiju Matsumura, Takuya Tsuji, Kenya Ohgushi, T. Abukawa
High Resolution Image Download MS PowerPoint Slide Ilmenite-type CuVO 3 is a promising compound for exploring novel spin and orbital states, as Cu 2+ (3d 9 ) and V 4+ (3d 1 ) ions each form a honeycomb lattice. In this study, we synthesized triclinic ilmenite-type CuVO 3 using a high-pressure and high-temperature method and investigated its spin and orbital states through synchrotron X-ray diffraction and measurements of electrical resistivity, magnetic susceptibility, and specific heat. The Cu 2+ ions exhibit the Jahn–Teller effect, leading to the triclinic distortion. This Jahn–Teller distortion hinders the formation of static V–V dimers, in contrast to other ilmenite-type vanadium oxides in which V–V dimerization is observed. These findings highlight triclinic ilmenite-type CuVO 3 as a fascinating system in which each cation exhibits characteristic spin and orbital states.