Dohendou Mohammad, Dekamin Mohammad G, Namaki Danial
Department of Chemistry, Pharmaceutical and Heterocyclic Compounds Research Laboratory, Iran University of Science and Technology Iran
Nanoscale Adv. 2023 Mar 17;5(9):2621-2638. doi: 10.1039/d3na00058c. eCollection 2023 May 2.
In this research, a novel supramolecular Pd(ii) catalyst supported on chitosan grafted by l-asparagine and an EDTA linker, named Pd@ASP-EDTA-CS, was prepared for the first time. The structure of the obtained multifunctional Pd@ASP-EDTA-CS nanocomposite was appropriately characterized by various spectroscopic, microscopic, and analytical techniques, including FTIR, EDX, XRD, FESEM, TGA, DRS, and BET. The Pd@ASP-EDTA-CS nanomaterial was successfully employed, as a heterogeneous catalytic system, in the Heck cross-coupling reaction (HCR) to afford various valuable biologically-active cinnamic acid derivatives in good to excellent yields. Different aryl halides containing I, Br and even Cl were used in HCR with various acrylates for the synthesis of corresponding cinnamic acid ester derivatives. The catalyst shows a variety of advantages including high catalytic activity, excellent thermal stability, easy recovery by simple filtration, more than five cycles of reusability with no significant decrease in its efficacy, biodegradability, and excellent results in the HCR using low-loaded Pd on the support. In addition, no leaching of Pd into the reaction medium and the final products was observed.
在本研究中,首次制备了一种新型的超分子钯(II)催化剂,该催化剂负载在由L-天冬酰胺和乙二胺四乙酸(EDTA)连接体接枝的壳聚糖上,命名为Pd@ASP-EDTA-CS。通过各种光谱、显微镜和分析技术,包括傅里叶变换红外光谱(FTIR)、能谱分析(EDX)、X射线衍射(XRD)、场发射扫描电子显微镜(FESEM)、热重分析(TGA)、漫反射光谱(DRS)和比表面积分析(BET),对所获得的多功能Pd@ASP-EDTA-CS纳米复合材料的结构进行了适当表征。Pd@ASP-EDTA-CS纳米材料作为一种多相催化体系,成功应用于Heck交叉偶联反应(HCR)中,以良好至优异的产率得到了各种有价值的生物活性肉桂酸衍生物。在HCR中,使用了含有碘、溴甚至氯的不同芳基卤化物与各种丙烯酸酯反应,以合成相应的肉桂酸酯衍生物。该催化剂具有多种优点,包括高催化活性、优异的热稳定性、通过简单过滤易于回收、可重复使用超过五个循环且其功效无显著降低、可生物降解性,以及在载体上使用低负载量钯的HCR中取得优异结果。此外,未观察到钯向反应介质和最终产物中的浸出。