Hillenbrand Julius, van Gastel Maurice, Bill Eckhard, Neese Frank, Fürstner Alois
Max-Planck-Institut für Kohlenforschung, 45470 Mülheim/Ruhr, Germany.
Max-Planck-Institute for Chemical Energy Conversion, 45470 Mülheim/Ruhr, Germany.
J Am Chem Soc. 2020 Sep 23;142(38):16392-16402. doi: 10.1021/jacs.0c07073. Epub 2020 Sep 10.
Treatment of [MoCl(THF)] with MOBu (M = Na, Li) does not result in simple metathetic ligand exchange but entails disproportionation with formation of the well-known dinuclear complex [(BuO)Mo≡Mo(OBu)] and a new paramagnetic compound, [Mo(OBu)]. This particular five-coordinate species is the first monomeric, homoleptic, all-oxygen-ligated but non-oxo 4d Mo(V) complex known to date; as such, it proves that the dominance of the Mo═O group over (high-valent) molybdenum chemistry can be challenged. [Mo(OBu)] was characterized in detail by a combined experimental/computational approach using X-ray diffraction; UV/vis, MCD, IR, EPR, and NMR spectroscopy; and quantum chemistry. The recorded data confirm a Jahn-Teller distortion of the structure, as befitting a d species, and show that the complex undergoes Berry pseudorotation. The alkoxide ligands render the disproportionation reaction, leading the formation of [Mo(OBu)] to be particularly facile, even though the parent complex [MoCl(THF)] itself was also found to be intrinsically unstable; remarkably, this substrate converts into a crystalline material, in which the newly formed Mo(III) and Mo(V) products cohabitate the same unit cell.
用MOBu(M = Na,Li)处理[MoCl(THF)]不会导致简单的复分解配体交换,而是会发生歧化反应,生成著名的双核配合物[(BuO)Mo≡Mo(OBu)]和一种新的顺磁性化合物[Mo(OBu)]。这种特殊的五配位物种是迄今为止已知的第一个单体、均配、全氧配位但非氧代的4d钼(V)配合物;因此,它证明了Mo═O基团在(高价)钼化学中的主导地位是可以被挑战的。通过结合X射线衍射、紫外可见光谱、磁圆二色光谱、红外光谱、电子顺磁共振光谱和核磁共振光谱以及量子化学的实验/计算方法,对[Mo(OBu)]进行了详细表征。记录的数据证实了该结构的 Jahn-Teller 畸变,这与d物种相符,并表明该配合物经历了 Berry 假旋转。醇盐配体使得歧化反应特别容易发生,导致[Mo(OBu)]的形成,尽管母体配合物[MoCl(THF)]本身也被发现本质上不稳定;值得注意的是,这种底物转化为一种晶体材料,其中新形成的Mo(III)和Mo(V)产物共存于同一晶胞中。