Salloum Dialla, Gautier Régis, Potel Michel, Gougeon Patrick
UMR CNRS 6226--Sciences Chimiques de Rennes, Université de Rennes 1, Avenue du Général, 35042 Rennes, France.
Chemistry. 2006 Nov 15;12(33):8513-7. doi: 10.1002/chem.200601256.
The Mo(15)S(20) compound was obtained by thermal decomposition of the metastable binary Mo(15)S(19) in sealed silica tube at temperatures above 500 degrees C. Its crystal structure was solved and refined from a two-component composite crystal by X-ray diffraction in the hexagonal space group P6(3)/m and consists of an equal mixture of the original Mo(9)S(27) cluster unit and the classical one Mo(6)S(8)S(6) interconnected through Mo--S bonds. The Mo core of the Mo(9)S(27) unit is totally new and formed a tricapped trigonal prism. Quantum chemical calculations carried out in order to understand these trends as well as magnetic susceptibility measurements are also reported. The title compound becomes superconducting below 5 K.
通过在密封石英管中于500℃以上对亚稳二元化合物Mo(15)S(19)进行热分解得到了Mo(15)S(20)化合物。通过在六方空间群P6(3)/m中进行X射线衍射,从两组分复合晶体中解析并精修了其晶体结构,该结构由原始的Mo(9)S(27)簇单元和经典的Mo(6)S(8)S(6)通过Mo-S键相互连接的等量混合物组成。Mo(9)S(27)单元的Mo核是全新的,形成了一个三帽三棱柱。还报道了为理解这些趋势而进行的量子化学计算以及磁化率测量。标题化合物在5K以下变成超导体。