Tanini Damiano, Capperucci Antonella
Department of Chemistry "Ugo Schiff", University of Florence, Via della Lastruccia 3-13, 50019 Sesto Fiorentino, FI, Italy.
Molecules. 2024 Sep 27;29(19):4595. doi: 10.3390/molecules29194595.
Selenium-containing molecules represent a valuable class of compounds with a variety of applications in chemical and biological fields. Selenated reagents are used as intermediates to introduce functional groups (e.g., double bonds) onto different substrates or in the synthesis of various selenated derivatives. Among the variety of selenium-containing reagents, silyl selenides are frequently used to transfer a selenated moiety due to the smooth functionalization of the Se-Si bond, which allows for the generation of selenium nucleophilic species under mild conditions. While the use of the analogous sulfur nucleophiles, namely silyl sulfides, has been widely explored, a relatively limited number of reports on selenosilanes have been provided. This contribution will focus on the application of selenosilanes as nucleophiles in a variety of organic transformations, as well as under radical and redox conditions. The use of silyl selenides to prepare metal complexes and as selenium precursors of materials for atomic layer deposition will also be discussed.
含硒分子是一类有价值的化合物,在化学和生物领域有多种应用。硒化试剂用作中间体,将官能团(如双键)引入不同底物或用于合成各种硒化衍生物。在各种含硒试剂中,硅硒化物由于Se-Si键的顺利官能化,常用于转移硒化部分,这使得在温和条件下能够生成硒亲核物种。虽然类似的硫亲核试剂(即硅硫化物)的使用已得到广泛研究,但关于硅硒烷的报道相对较少。本论文将重点关注硅硒烷作为亲核试剂在各种有机转化中的应用,以及在自由基和氧化还原条件下的应用。还将讨论使用硅硒化物制备金属配合物以及作为原子层沉积材料的硒前驱体。