Dai Jing-Cao, Gupta Shalabh, Gourdon Olivier, Kim Hyun-Jeong, Corbett John D
Ames Laboratory and Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.
J Am Chem Soc. 2009 Jun 24;131(24):8677-82. doi: 10.1021/ja901865d.
High yields of the novel BaHg(2)Tl(2) are achieved from reactions of the appropriate cast alloys at approximately 400 degrees C. (Isotypic SrHg(2)Tl(2) also exists.) The tetragonal barium structure (P4(2)/mnm, a = 10.606 A, c = 5.159 A) was refined from both single-crystal X-ray and neutron powder diffraction data in order to ensure the atom site assignments although distances and calculated atom site population also support the results. The Hg and Tl network atoms are distinctive in their functions and bonding. Parallel chains of Hg hexagons and of Tl tetrahedra along c are constructed from polyhedra that share opposed like edges, and these are in turn interconnected by Hg-Tl bonds. Overall, the number of Tl-Tl bonds per cell exceeds the Hg-Hg type by 20:12, but these are approximately 1:2 each in bonding according to their average -ICOHP values (related to overlap populations). Barium is bound within a close 15-atom polyhedron, 12 atoms of which are the more electronegative Hg. LMTO-ASA calculations show that scalar relativistic effects are particularly important for Hg 5d-6s mixing in Hg-Hg and Hg-Tl bonding, whereas relatively separate Tl 6s and 6p states are more important in Tl-Tl interactions. The 6p states of Hg and Tl and 5d of Ba define a dominant conduction band around E(F), and the phase is metallic and Pauli-like paramagnetic. The thallium characteristics here are close to those in numerous alkali-metal-Tl cluster systems. Other active metal-mercury phases that have been studied theoretically are all distinctly electron-richer and more reduced, and without appreciable net 5d, 6s contributions to Hg-Hg bonding.
通过在约400℃下使适当的铸造合金发生反应,可高产率地制备新型化合物BaHg₂Tl₂。(同型的SrHg₂Tl₂也存在。)从单晶X射线和中子粉末衍射数据对四方钡结构(P4₂/mnm,a = 10.606 Å,c = 5.159 Å)进行了精修,以确保原子位置的归属,尽管键长和计算出的原子位置占有率也支持该结果。汞(Hg)和铊(Tl)网络原子在其功能和键合方面具有独特性。沿着c轴,由共享相对类似边的多面体构建了汞六边形和平行的铊四面体链,并且这些链又通过汞 - 铊键相互连接。总体而言,每个晶胞中铊 - 铊键的数量比汞 - 汞键多20 : 12,但根据它们的平均 -ICOHP值(与重叠布居有关),在键合中它们各自大约为1 : 2。钡被束缚在一个紧密的15原子多面体内,其中12个原子是电负性更强的汞。线性 muffin-tin轨道 - 原子球近似(LMTO - ASA)计算表明,标量相对论效应对于汞 - 汞和汞 - 铊键合中汞的5d - 6s混合尤为重要,而相对分离的铊6s和6p态在铊 - 铊相互作用中更为重要。汞和铊的6p态以及钡的5d态在费米能级(E(F))附近定义了一个主导导带,该相是金属性的且呈泡利型顺磁性。这里铊的特性与众多碱金属 - 铊簇体系中的铊特性相近。理论上研究过的其他活性金属 - 汞相都明显富电子且还原性更强,并且对汞 - 汞键合没有可观的净5d、6s贡献。