Campbell Rory, Konar Sumit, Hunter Steven, Pulham Colin, Portius Peter
Department of Chemistry, University of Sheffield , Brook Hill, Sheffield, S3 7HF, U.K.
EaStCHEM School of Chemistry, University of Edinburgh , David Brewster Rd., Edinburgh, EH9 3FJ, U.K.
Inorg Chem. 2018 Jan 2;57(1):400-411. doi: 10.1021/acs.inorgchem.7b02621. Epub 2017 Dec 15.
The first two examples of the class of tetracoordinate low-valent, mixed-ligand tin azido complexes, Sn(N)(L), are shown to form upon reaction of SnCl with NaN and SnF with MeSiN in either pyridine or 4-picoline (2, L = py; 3, L = pic). These adducts of Sn(N) are shock- and friction-insensitive and stable at r.t. under an atmosphere of pyridine or picoline, respectively. A new, fast, and efficient method for the preparation of Sn(N) (1) directly from SnF, and by the stepwise de-coordination of py from 2 at r.t., is reported that yields 1 in microcrystalline form, permitting powder X-ray diffraction studies. Reaction of 1 with a nonbulky cationic H-bond donor forms the salt-like compound {C(NH)}Sn(N) (4) which is comparably stable despite its high nitrogen content (55%) and the absence of bulky weakly coordinating cations that are conventionally deemed essential in related systems of homoleptic azido metallates. The spectroscopic and crystallographic characterization of the polyazides 1-4 provides insight into azide-based H-bonded networks and unravels the previously unknown structure of 1 as an important lighter binary azide homologue of Pb(N). The atomic coordinates for 1 and 2-4 were derived from powder and single crystal XRD data, respectively; those for 1 are consistent with predictions made by DFT-D calculations under periodic boundary conditions.
四配位低价混合配体叠氮锡配合物Sn(N)(L)的前两个实例表明,在吡啶或4-甲基吡啶(2,L = py;3,L = pic)中,SnCl与NaN反应以及SnF与MeSiN反应可形成此类配合物。这些Sn(N)加合物对冲击和摩擦不敏感,分别在吡啶或4-甲基吡啶气氛下于室温稳定。报道了一种直接由SnF制备Sn(N)(1)的新的快速有效方法,即在室温下通过从2逐步脱去py来制备,得到微晶形式的1,从而可以进行粉末X射线衍射研究。1与一种非庞大的阳离子氢键供体反应形成类盐化合物{C(NH)}Sn(N)(4),尽管其氮含量高(55%)且没有通常认为在相关同配叠氮金属酸盐体系中必不可少的庞大弱配位阳离子,但该化合物仍相当稳定。多叠氮化物1 - 4的光谱和晶体学表征有助于深入了解基于叠氮的氢键网络,并揭示了1作为Pb(N)的重要较轻二元叠氮同系物的先前未知结构。1和2 - 4的原子坐标分别来自粉末和单晶XRD数据;1的原子坐标与在周期性边界条件下DFT - D计算的预测结果一致。