Baran Nuray Yılmaz, Baran Talat, Nasrollahzadeh Mahmoud
Department of Chemistry Technology, Technical Vocational School, Aksaray University, 68100, Aksaray, Turkey.
Department of Chemistry, Faculty of Science and Letters, Aksaray University, 68100, Aksaray, Turkey.
Sci Rep. 2023 Jul 25;13(1):12008. doi: 10.1038/s41598-023-38898-w.
Recently, the development of heterogeneous nanocatalytic systems using solid supports has been gaining importance due to some advantages such as easy handling, high thermal stability, high efficiency, reusability, and so on. Therefore, the design of catalyst supports for the preparation of stable heterogeneous catalytic systems is of great importance. In this work, Schiff base-modified ZnO particles have been developed (ZnO-Scb) as a novel support. A heterogeneous nanocatalyst system has then been prepared by immobilizing palladium nanoparticles (Pd NPs) on the ZnO-Scb surface as the support. The resulting palladium nanocatalyst (Pd-ZnO-Scb) structure has been characterized by different analytical techniques (FT-IR, XRD, TEM, FE-SEM, elemental mapping and EDS) and used to catalyze the Heck coupling reactions and 4-nitrophenol (4-NP) reduction. Test results revealed that Pd-ZnO-Scb could effectively couple various aryl halides with styrene in yields of up to 98% in short reaction times. Pd-ZnO-Scb was also efficiently used in the complete 4-NP reduction within 135 s at room temperature. Additionally, it was found that Pd-ZnO-Scb was more effective than other reported catalysts in the Heck coupling reaction. Moreover, the recycling tests indicated that Pd-ZnO-Scb could be easily isolated from the reaction medium and reused in seven consecutive catalytic runs while retaining its nanostructure.
近年来,由于具有易于处理、高热稳定性、高效率、可重复使用等优点,使用固体载体的多相纳米催化体系的发展变得越来越重要。因此,设计用于制备稳定多相催化体系的催化剂载体具有重要意义。在这项工作中,席夫碱修饰的氧化锌颗粒(ZnO-Scb)被开发为一种新型载体。然后通过将钯纳米颗粒(Pd NPs)固定在ZnO-Scb表面作为载体,制备了一种多相纳米催化剂体系。所得钯纳米催化剂(Pd-ZnO-Scb)结构通过不同的分析技术(傅里叶变换红外光谱、X射线衍射、透射电子显微镜、场发射扫描电子显微镜、元素映射和能谱分析)进行了表征,并用于催化Heck偶联反应和4-硝基苯酚(4-NP)还原。测试结果表明,Pd-ZnO-Scb能够在短反应时间内有效地将各种芳基卤化物与苯乙烯偶联,产率高达98%。Pd-ZnO-Scb在室温下135秒内也能高效地用于4-NP的完全还原。此外,发现在Heck偶联反应中,Pd-ZnO-Scb比其他报道的催化剂更有效。而且,回收测试表明,Pd-ZnO-Scb可以很容易地从反应介质中分离出来,并在连续七次催化运行中重复使用,同时保持其纳米结构。