Zare Abdolkarim, Barzegar Marziyeh, Rostami Esmael, Moosavi-Zare Ahmad Reza
Department of Chemistry, Faculty of Nano and Bio Science and Technology, Persian Gulf University Bushehr 75169 Iran
Department of Chemistry, Payame Noor University PO Box 19395-4697 Tehran Iran
RSC Adv. 2024 Aug 13;14(35):25235-25246. doi: 10.1039/d4ra04136d. eCollection 2024 Aug 12.
At first, a novel graphene oxide-based magnetic nanocomposite namely Si-propyl-functionalized , , , -tetramethylethylenediamine- , -diium hydrogen sulfate anchored to graphene oxide-supported FeO (nano-[GO@FeO@R-NHMe][HSO]) was fabricated. After full characterization of the nanocomposite, its catalytic performance was examined for the solvent-free construction of ,'-alkylidene bisamides from aryl aldehydes (1 eq.) and primary aromatic and aliphatic amides (2 eq.), in which the products were acquired in short times (15-30 min) and high to excellent yields (89-98%). Nano-[GO@FeO@R-NHMe][HSO] could be magnetically isolated form the reaction medium, and reused three times without remarkable loss of catalytic activity.
首先,制备了一种新型的基于氧化石墨烯的磁性纳米复合材料,即硅丙基功能化的、、、-四甲基乙二胺-、-硫酸氢二铵锚定在氧化石墨烯负载的FeO上(纳米-[GO@FeO@R-NHMe][HSO])。在对该纳米复合材料进行全面表征后,考察了其在无溶剂条件下由芳醛(1当量)和伯芳香族及脂肪族酰胺(2当量)构建、'-亚烷基双酰胺的催化性能,产物在短时间(15 - 30分钟)内获得,产率高至优异(89 - 98%)。纳米-[GO@FeO@R-NHMe][HSO]可从反应介质中通过磁性分离,并且可重复使用三次而催化活性无明显损失。