Habiba Binte Kashem, Gregory Morrison, Abdullah Al Muhit, Buddhima K. P. Maldeni Kankanamalage, Natalia B. Shustova, Hans-Conrad zur Loye
A series of NaRESe 2 (RE = Sm, Gd–Lu) compounds were synthesized as single crystals, and NaRESe 2 (RE = Ce, Pr, Nd) was synthesized as polycrystalline powders using the boron chalcogen mixture (BCM) method. The detailed synthesis, single-crystal structure characterization, magnetic properties, and optical properties of the NaRESe 2 series are reported. The structures of the crystals were characterized by single-crystal X-ray diffraction. This series crystallizes in the trigonal ( R ̅3 m ) crystal system, where the RE 3+ ions form a triangular lattice. Magnetic property measurements of NaRESe 2 (RE = Ce - Nd, Sm, Gd - Yb) indicate the presence of possible antiferromagnetic correlations that were observed in all compounds; however, no long-range magnetic order was observed, suggesting the presence of magnetic frustration. The band gap energies of NaRESe 2 (RE = Ce - Nd, Sm, Gd- Lu) were determined by UV–vis diffuse reflectance measurements. NaRESe 2 (RE = Gd, Tb, Lu) were shown to luminesce; photoluminescence quantum yield (PLQY) measurements were performed on polycrystalline samples of NaRESe 2 (RE = Gd, Tb, Lu).