Wang Ting, Chen Yi-Gang, Guo Yao, Wang Fang, Song Qi, Jia Ying-Jie, Zhang Xian-Ming
Key Laboratory of Magnetic Molecules and Magnetic Information Material of Ministry of Education, School of Chemistry and Material Science, Shanxi Normal University, Linfen 041004, China.
School of Chemical and Environmental Engineering, Anyang Institute of Technology, Anyang 455000, China.
Dalton Trans. 2020 Apr 15;49(15):4914-4919. doi: 10.1039/d0dt00141d.
Isostructural mixed alkali/alkaline-earth metal tellurite halides BaLiTe2O5X (X = Cl, Br) have been successfully synthesized by a mild hydrothermal method, which possess the [Te2O5]∞ chains formed by the corner-sharing connections of the TeO3 and TeO4 polyhedra. The [Te2O5]∞ chains are bridged via the LiO3 polyhedra to form the [LiTe2O5]∞ layers with 4- and 6-membered rings. The adjacent [LiTe2O5]∞ layers are linked via the BaO9 polyhedra to form the [BaLiTe2O5]∞ double layers, which are further connected via weak Ba-X-Li interactions to generate a 3D framework. Analysis of different lithium tellurites shows that the different arrangements of the Te-O and Li-O units in the lithium tellurites can be attributed to the cation-cation repulsion and lone-pair effect. Both compounds display good thermal stability, wide optical bandgaps (4.25 and 4.13 eV), and large birefringence. First-principles calculations indicate that the TeOn groups and X- determine the optical properties of BaLiTe2O5X (X = Cl, Br).
通过温和水热法成功合成了同构的混合碱金属/碱土金属碲酸盐卤化物BaLiTe2O5X(X = Cl,Br),其具有由TeO3和TeO4多面体通过角共享连接形成的[Te2O5]∞链。[Te2O5]∞链通过LiO3多面体桥接形成具有4元和6元环的[LiTe2O5]∞层。相邻的[LiTe2O5]∞层通过BaO9多面体连接形成[BaLiTe2O5]∞双层,其通过弱的Ba-X-Li相互作用进一步连接以生成三维框架。对不同碲酸锂的分析表明,碲酸锂中Te-O和Li-O单元的不同排列可归因于阳离子-阳离子排斥和孤对效应。两种化合物均表现出良好的热稳定性、宽光学带隙(4.25和4.13 eV)和大双折射。第一性原理计算表明,TeOn基团和X-决定了BaLiTe2O5X(X = Cl,Br)的光学性质。