Center for Nanoscale Science and Engineering, North Dakota State University, 1735 Research Park Drive, Fargo, ND 58108, USA.
Dalton Trans. 2010 Dec 14;39(46):11188-92. doi: 10.1039/c0dt00925c. Epub 2010 Oct 22.
Organocyanides readily coordinate to decachlorocyclopentasilane (Si(5)Cl(10)) to form "inverse sandwich" compounds 1-3 with a planar Si(5) ring. The products were isolated in high yield and fully characterized by elemental analysis, multinuclear NMR, IR and UV-Vis spectroscopy. While the spectroscopic data suggests the presence of a fairly weak interaction between the Si(5) ring and the coordinative organocyanide ligands, single-crystal X-ray diffraction studies of compound 1 and 2 show μ(5)-coordination of the apical cyano nitrogen atoms to the silicon atoms in the Si(5) ring. Distances between silicon atoms and nitrogen atoms are significantly shorter than a Si-N van der Waals bond but longer than the sum of their covalent radii. Multiple interactions between the cyano groups and equatorial Cl atoms, and intermolecular interactions were observed in the solid state for both compounds 1 and 2.
有机氰化物容易与十氯环戊硅烷(Si(5)Cl(10))配位,形成具有平面 Si(5)环的“反夹心”化合物 1-3。这些产物以高产率分离出来,并通过元素分析、多核 NMR、IR 和 UV-Vis 光谱法进行了充分的表征。虽然光谱数据表明 Si(5)环和配位有机氰化物配体之间存在相当弱的相互作用,但对化合物 1 和 2 的单晶 X 射线衍射研究表明,顶点氰基氮原子与 Si(5)环中的硅原子以μ(5)-配位方式配位。硅原子和氮原子之间的距离明显短于 Si-N 范德华键,但长于它们共价半径之和。在化合物 1 和 2 的固态中均观察到氰基和赤道 Cl 原子之间的多种相互作用以及分子间相互作用。