Department of Chemistry, McMaster University , Hamilton, Ontario, L8S 4M1, Canada.
J Am Chem Soc. 2014 Mar 12;136(10):3888-903. doi: 10.1021/ja412193z. Epub 2014 Mar 3.
The synthesis of high-purity Hg(OTeF5)2 has resulted in its structural characterization in the solid state by Raman spectroscopy and single-crystal X-ray diffraction (XRD) and in solution by (19)F NMR spectroscopy. The crystal structure of Hg(OTeF5)2 (-173 °C) consists of discrete Hg(OTeF5)2 units having gauche-conformations that interact through long Hg---O and Hg---F intramolecular contacts to give a chain structure. The Lewis acidity of Hg(OTeF5)2 toward NgF2 (Ng = Xe, Kr) was investigated in SO2ClF solvent and shown to form stable coordination complexes with NgF2 at -78 °C. Both complexes were characterized by low-temperature Raman spectroscopy (-155 °C) and single-crystal XRD. The complexes are isostructural and are formulated as Hg(OTeF5)2·1.5NgF2. The Hg(OTeF5)2 units of Hg(OTeF5)2·1.5NgF2 also have gauche-conformations and are linked through bridging NgF2 molecules, also resulting in chain structures. These complexes represent the only examples of coordination compounds where NgF2 coordinates to mercury in a neutral covalent compound and the only example of mercury coordinated to KrF2. Moreover, the Hg(OTeF5)2·1.5KrF2 complex is the only KrF2 complex known to contain a bridging KrF2 ligand. Energy-minimized gas-phase geometries and vibrational frequencies for the model compounds, [Hg(OTeF5)2]3 and [Hg(OTeF5)2]3·2NgF2, were obtained and provide good approximations of the local environments of Hg(OTeF5)2 and NgF2 in the crystal structures of Hg(OTeF5)2 and Hg(OTeF5)2·1.5NgF2. Assignments of the Raman spectra of Hg(OTeF5)2 and Hg(OTeF5)2·1.5NgF2 are based on the calculated vibrational frequencies of the model compounds. Natural bond orbital analyses provided the associated bond orders, valencies, and natural population analysis charges.
高纯度 Hg(OTeF5)2 的合成导致其在固态下通过拉曼光谱和单晶 X 射线衍射 (XRD) 以及在溶液中通过 (19)F NMR 光谱进行结构表征。Hg(OTeF5)2(-173°C)的晶体结构由具有 gauche-构象的离散 Hg(OTeF5)2 单元组成,这些单元通过长的 Hg---O 和 Hg---F 分子内相互作用相互作用,形成链状结构。Hg(OTeF5)2 对 NgF2(Ng=Xe、Kr)的路易斯酸度在 SO2ClF 溶剂中进行了研究,结果表明它在-78°C 下与 NgF2 形成稳定的配位络合物。这两个配合物都通过低温拉曼光谱(-155°C)和单晶 XRD 进行了表征。这些配合物结构相同,化学式为 Hg(OTeF5)2·1.5NgF2。Hg(OTeF5)2·1.5NgF2 的 Hg(OTeF5)2 单元也具有 gauche-构象,并通过桥接 NgF2 分子连接,也形成链状结构。这些配合物代表了 NgF2 以中性共价化合物形式与汞配位的配位化合物的唯一实例,也是汞与 KrF2 配位的唯一实例。此外,Hg(OTeF5)2·1.5KrF2 配合物是已知唯一含有桥接 KrF2 配体的 KrF2 配合物。获得模型化合物[Hg(OTeF5)2]3 和[Hg(OTeF5)2]3·2NgF2 的气相最小能量几何形状和振动频率,并为 Hg(OTeF5)2 和 NgF2 在 Hg(OTeF5)2 和 Hg(OTeF5)2·1.5NgF2 的晶体结构中的局部环境提供了良好的近似值。Hg(OTeF5)2 和 Hg(OTeF5)2·1.5NgF2 的拉曼光谱的分配是基于模型化合物的计算振动频率。自然键轨道分析提供了相关的键序、价态和自然布居分析电荷。