Ghosh Moushakhi, Gaurav Kumar, Panwaria Prakash, Panday Rishukumar, Tothadi Srinu, Khan Shabana
Department of Chemistry, Indian Institute of Science Education and Research Pune Dr Homi Bhabha Road, Pashan Pune-411008 India
Analytical and Environmental Sciences Division and Centralized Instrumentation Facility, CSIR-Central Salt and Marine Chemicals Research Institute Gijubhai Badheka Marg Bhavnagar-364002 India.
Chem Sci. 2025 Jun 30. doi: 10.1039/d5sc00879d.
Anchoring homolytic and heterolytic bond functionalisation at low-coordinate coinage metal centres is important due to their potential use as active catalysts in organic transformations. In the realm of carbene-stabilised coinage metal chemistry, heteroatom functionalised coinage metal precursors synthesised from such bond activations have long been explored. Interestingly, -heterocyclic silylene, being an equally potent neutral donor ligand, has not been used for the same. Of note, carbene-stabilised heteroatom functionalised coinage metal precursors are vastly developed with copper centres only, while silver has been underexplored. This work reports the isolation of a variety of [PhC{N( Bu)}SiN(SiMe)] (1) coordinated aryl-copper(i) and aryl-silver(i) complexes (2-8). We have also examined the reactivity pattern of organo-copper with differently substituted silylenes (9-11). These complexes were then utilised to cleave various homolytic and heterolytic bonds to access silylene-coordinated heteroatom functionalised coinage metal complexes (12-24). We have shown the reaction of reactive aryl-coinage metal precursors towards homolytic bonds, having B-B and Se-Se bonds, which led to the formation of an NHSi-supported dimeric μ-boryl bound Cu(i) complex (12) and a new class of unprecedented NHSi-supported coinage metal-selenogenolates (14-16). These aryl-coinage metal precursors also smoothly afforded several elusive NHSi-copper and silver amides (17-22) N-H bond cleavage. A heterolytic cleavage of the P-Si bond resulted in the formation of NHSi stabilised copper and silver phosphide complexes (23 and 24), among which the latter is the first precedent of the dimeric Ag-phosphide complex. Lastly, we have utilised NHSi → copper-aryl complexes as aryl transfer reagents in C-C coupling reactions, which led to the formation of products in excellent yields with a high TON. The analogous silver complex was employed in the three-component α-aminonitrile synthesis efficiently. Our report establishes NHSi coordinated aryl copper and silver complexes as a perfect and robust platform for accessing a diverse array of reactive coinage metal precursors that were hitherto unknown.
在低配位的贵金属中心实现均裂和异裂键官能化具有重要意义,因为它们有潜力用作有机转化中的活性催化剂。在卡宾稳定的贵金属化学领域,通过这种键活化合成的杂原子官能化贵金属前体早已得到研究。有趣的是,作为同样有效的中性供体配体的 - 杂环硅烯却未被用于此。值得注意的是,卡宾稳定的杂原子官能化贵金属前体仅在铜中心得到了大量发展,而银的相关研究较少。这项工作报道了多种[PhC{N( Bu)}SiN(SiMe)] (1) 配位的芳基铜 (I) 和芳基银 (I) 配合物 (2 - 8) 的分离。我们还研究了有机铜与不同取代的硅烯 (9 - 11) 的反应模式。然后利用这些配合物裂解各种均裂和异裂键,以得到硅烯配位的杂原子官能化贵金属配合物 (12 - 24)。我们展示了活性芳基 - 贵金属前体与具有 B - B 和 Se - Se 键的均裂键的反应,这导致形成了一种由NHSi支撑的二聚体μ - 硼基键合的Cu(I) 配合物 (12) 和一类新型的前所未有的由NHSi支撑的贵金属 - 硒醇盐 (14 - 16)。这些芳基 - 贵金属前体还通过N - H键裂解顺利得到了几种难以捉摸的NHSi - 铜和银酰胺 (17 - 22)。P - Si键的异裂裂解导致形成了由NHSi稳定的铜和银磷化物配合物 (23和24),其中后者是二聚体Ag - 磷化物配合物的首个实例。最后,我们将NHSi → 铜 - 芳基配合物用作C - C偶联反应中的芳基转移试剂,这导致以优异的产率和高TON形成产物。类似的银配合物有效地用于三组分α - 氨基腈合成。我们的报告确立了NHSi配位的芳基铜和银配合物是一个完美且强大的平台,可用于获取一系列迄今为止未知的活性贵金属前体。