Dey Shreyata, Ghosh Prasenjit
Department of Chemistry Indian Institute of Technology Bombay Powai, Mumbai 400 076, India.
ACS Omega. 2023 Mar 14;8(12):11039-11064. doi: 10.1021/acsomega.2c07875. eCollection 2023 Mar 28.
The coupling of aryl and aliphatic azides with isocyanides yielding carbodiimides (-) were efficiently catalyzed by well-defined structurally characterized -(MIC)PdI(L) [MIC = 1-CHPh-3-Me-4-(CHN(CH)S)-1,2,3-triazol-5-ylidene, L = NCH (), MesNC ()], -(MIC)PdI (), and -(MIC)Pd(PPh)I () type palladium complexes, which incidentally mark the first instances of the use of mesoionic singlet palladium carbene complexes for the said application. As observed from the product yields, the catalytic activity varied in the order > ∼ > for these complexes. A detailed mechanistic studies indicated that the catalysis proceeded via a palladium(0) (- ) species. Using a representative palladium precatalyst (), the azide-isocyanide coupling was successfully extended to synthesizing two different bioactive heteroannular benzoxazole (-) and benzimidazole (-) derivatives, thereby broadening the scope of the catalytic application.
结构明确的 -(MIC)PdI(L) [MIC = 1-苯基-3-甲基-4-(CHN(CH)S)-1,2,3-三唑-5-亚基,L = NCH (),MesNC ()]、-(MIC)PdI () 和 -(MIC)Pd(PPh)I () 型钯配合物能够高效催化芳基叠氮化物和脂肪族叠氮化物与异腈反应生成碳二亚胺(-),这也恰好是首次将中离子单重态钯卡宾配合物用于上述反应。从产物收率可以看出,这些配合物的催化活性顺序为 > ∼ > 。详细的机理研究表明,催化反应通过钯(0) (- ) 物种进行。使用代表性的钯预催化剂(),叠氮化物-异腈偶联反应成功扩展到合成两种不同的生物活性杂环苯并恶唑(-)和苯并咪唑(-)衍生物,从而拓宽了催化应用的范围。