Key Laboratory of Green Chemistry and Technology of Ministry of Education at Sichuan University, College of Chemistry, Sichuan University, Chengdu 610064, PR China.
Dalton Trans. 2009 Oct 21(39):8341-8. doi: 10.1039/b904944b. Epub 2009 Aug 10.
An efficient and versatile synthetic approach to NHC-based organometallic polymers has been developed by a simple three-step synthesis. A novel brush polymer having imidazolium salt side chains (P2) was firstly synthesized through postpolymerization modification of P1, which permits access to Ag(I)-NHC-based side chain polymer (P3) at room temperature in high yield. P3 was applied as a carbene transfer agent to form a Pd-NHC-containing polymer (P4) by the transmetallation reaction of Ag(I)-NHCs in the side chains. Inductively coupled plasma atomic emission spectroscopy (ICP-AES) analysis indicated that 77% of Ag(I)-NHCs in the side chains of P3 were transmetallated. The resulting Pd-NHC-containing polymer (P4) showed high catalytic activity and reusability in the Suzuki reactions of aryl chlorides and aryl boronic acids. This novel Pd-NHC-containing polymeric catalyst was used five times and still remained active giving the desired biaryl products in 70% yield in the fifth run of the cross-coupling reaction of deactivated 4-chloroanisole with phenylboronic acid.
通过简单的三步合成,开发了一种高效、通用的基于 NHC 的有机金属聚合物的合成方法。首先通过 P1 的后聚合修饰合成了具有咪唑盐侧链的新型刷状聚合物(P2),这使得在室温下以高产率获得 Ag(I)-NHC 基侧链聚合物(P3)成为可能。P3 被用作卡宾转移试剂,通过 Ag(I)-NHC 侧链中的转金属反应形成含有 Pd-NHC 的聚合物(P4)。电感耦合等离子体原子发射光谱(ICP-AES)分析表明,P3 侧链中的 77%的 Ag(I)-NHC 发生了转金属化。所得含有 Pd-NHC 的聚合物(P4)在芳基氯和芳基硼酸的 Suzuki 反应中表现出高催化活性和可重复使用性。这种新型含有 Pd-NHC 的聚合物催化剂在与活化的 4-氯苯甲醚与苯硼酸的交叉偶联反应的第五次循环中使用了五次,仍然保持活性,以 70%的产率得到所需的联苯产物。