School of Chemistry and Chemical Engineering, Jinggangshan University, 28 Xueyuan Road, Qingyuan District, Ji'an, Jiangxi, 343009, China.
Chem Biodivers. 2023 Jun;20(6):e202201246. doi: 10.1002/cbdv.202201246. Epub 2023 May 30.
Rational design of high-efficiency N-heterocyclic carbene (NHC) palladium catalyst is of great importance to modern organic synthesis, especially in chemical and pharmaceutical industries. Herein, we fabricate a polymer network containing N-heterocyclic carbene palladium (PNNHC-Pd) catalytic active sites via an immobilization process. The N-heterocyclic carbene palladium can serve as a promising linkage of polymer network as well as an effective catalytic active site owing to its structural preference and strong σ-donating ability with palladium species. The results display that N-heterocyclic carbene palladium disperses homogeneously in polymer network, thus rendering PNNHC-Pd excellent catalytic activity, high stability and superior reusability in palladium-catalyzed Suzuki-Miyaura coupling reaction in aqueous medium. This work provides a new insight into the development of heterogenization of homogeneous catalysts based on polymer network.
高效 N-杂环卡宾(NHC)钯催化剂的合理设计对现代有机合成具有重要意义,特别是在化学和制药行业。在此,我们通过固定化过程制备了一种含有 N-杂环卡宾钯(PNNHC-Pd)催化活性位点的聚合物网络。由于其结构偏好和与钯物种的强σ供电子能力,N-杂环卡宾钯可以作为聚合物网络的有前途的连接体以及有效的催化活性位点。结果表明,N-杂环卡宾钯均匀分散在聚合物网络中,从而使 PNNHC-Pd 在水相中的钯催化 Suzuki-Miyaura 偶联反应中表现出优异的催化活性、高稳定性和优异的可重复使用性。这项工作为基于聚合物网络的均相催化剂的多相化发展提供了新的见解。