化学
四配位
硅烷
结晶学
核磁共振波谱
共价键
硅烷
硅
相(物质)
亚稳态
电子衍射
复分解
盐变质反应
动态共价化学
光化学
聚合
有机化学
衍射
超分子化学
晶体结构
聚合物
物理
平面的
计算机图形学(图像)
光学
计算机科学
作者
Deborah Hartmann,Thaddäus Thorwart,Rosa Müller,Jean Thusek,Jan Schwabedissen,Andreas Mix,Jan‐Hendrik Lamm,Beate Neumann,Norbert W. Mitzel,Lutz Greb
摘要
Catechols occupy a unique role in the structural, bio-, and geochemistry of silicon. Although a wealth of knowledge exists on their hypercoordinate complexes, the structure of tetracoordinate bis(catecholato)silane, Si(catH)2 1, has been enigmatic since its first report in 1951. Indeed, the claim of a planar-tetracoordinated silicon in 1 triggered a prominent debate, which is unsettled to this day. Herewith, we present a comprehensive structural study on 1 and derivatives in the gas phase by electron diffraction, in a neon matrix by IR spectroscopy, in solution by diffusion NMR spectroscopy, and in the solid-state by X-ray diffraction and MAS NMR spectroscopy, complemented by high-level quantum-chemical computations. The compound exhibits unprecedented phase adaptation. In the gas phase, the monomeric bis(catecholato)silane is tetrahedral, but in the condensed phase, it is metastable toward oligomerization up to a degree controllable by the type of catechol, temperature, and concentration. For the first time, spectroscopic evidence is obtained for a rapid Si–O σ-bond metathesis reaction. Hence, this study sorts out a long-lasting debate and confirms dynamic covalent features for our Earth's crust's most abundant chemical bond.
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