Poitiers Nadine E, Huch Volker, Zimmer Michael, Scheschkewitz David
Krupp-Chair of Inorganic and General Chemistry, Saarland University, Campus Saarbrücken C4.1, 66123, Saarbrücken, Germany.
Chemistry. 2020 Dec 15;26(70):16599-16602. doi: 10.1002/chem.202003180. Epub 2020 Oct 12.
Reactions of silylenes with heavier chalcogens (E) typically result in Si=E double bonds or their π-addition products. In contrast, the oxidation of a silylene-functionalized unsaturated silicon cluster (siliconoid) with Group 16 elements selectively yields cluster expanded siliconoids Si E (E=S, Se, Te) fully preserving the unsaturated nature of the cluster scaffold as evident from the NMR signatures of the products. Mechanistic considerations by DFT calculations suggest the intermediacy of a Si siliconoid with exohedral Si=E functionality. The reaction thus may serve as model system for the oxidation of surface-bonded silylenes at Si(100) by chalcogens and their diffusion into the silicon bulk.
硅烯与较重的硫族元素(E)反应通常会生成Si=E双键或其π-加成产物。相比之下,用第16族元素氧化硅烯官能化的不饱和硅簇(类硅烯)会选择性地生成簇扩展类硅烯Si E(E = S、Se、Te),从产物的核磁共振信号可以明显看出,该过程完全保留了簇骨架的不饱和性质。密度泛函理论计算的机理分析表明,具有外表面Si=E官能团的硅类硅烯是反应中间体。因此,该反应可作为硫族元素氧化Si(100)表面键合硅烯并使其扩散到硅体相中的模型体系。