School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, Jiangsu 225002, P.R. China.
Inorg Chem. 2023 May 22;62(20):7681-7688. doi: 10.1021/acs.inorgchem.2c04272. Epub 2023 May 6.
Rare-earth (RE) chalcogenide borates are very rarely discovered in view of the difficulties in synthesis though they have demonstrated attractive physical performances. Here, the first mixed RE chalcogenide borates EuSmMgSBO () and EuGdMgSBO () are synthesized by combining RE, sulfur, and borate ions into one structure. They crystallize in the centrosymmetric hexagonal space group 6/, and their 3D honeycomb-like {[BO]} open frameworks are built by [BO(O)] and [BO(O)] polyanionic clusters and consolidated by Mg ions; both of which are formed by BO tetrahedra and BO planar triangles. The coordination modes of RE ions are rare REOS bicapped trigonal prisms and REOS irregular polyhedra, and their band gaps are determined to be 2.25 and 2.22 eV, respectively. They exhibit antiferromagnetic interactions and distinct photocurrent responses. The corresponding theoretical calculations are also performed. The study of and perhaps stimulates interest in exploring new functional RE chalcogenide borates.
由于合成困难,稀土(RE)硫属化物硼酸盐很少被发现,但它们表现出了吸引人的物理性能。在此,通过将 RE、硫和硼酸盐离子组合成一个结构,首次合成了混合 RE 硫属化物硼酸盐 EuSmMgSBO(EuSmMgSBO)和 EuGdMgSBO(EuGdMgSBO)。它们在中心对称的六方空间群 6/ 中结晶,其 3D 蜂窝状 {[BO]} 开放框架由 [BO(O)] 和 [BO(O)] 多阴离子簇构成,并由 Mg 离子加固;它们都是由 BO 四面体和 BO 平面三角形构成的。RE 离子的配位方式为罕见的 REOS 双帽三角棱柱体和 REOS 不规则多面体,其带隙分别确定为 2.25 和 2.22 eV。它们表现出反铁磁相互作用和明显的光电流响应。还进行了相应的理论计算。对 和 的研究可能激发了人们对探索新型功能 RE 硫属化物硼酸盐的兴趣。