Ghamari Kargar Pouya, Bagherzade Ghodsieh
Department of Chemistry, Faculty of Sciences, University of Birjand Birjand 97175-615 Iran
RSC Adv. 2021 May 27;11(31):19203-19220. doi: 10.1039/d1ra01913a. eCollection 2021 May 24.
Today, most synthetic methods are aimed at carrying out reactions under more efficient conditions and the realization of the twelve principles of green chemistry. Due to the importance and widespread applications of tetrazoles in various industries, especially in the field of pharmaceutical chemistry, and the expansion of the use of nanocatalysts in the preparation of valuable chemical reaction products, we decided to use an (FeO@NFC@NSalophCu)COH nanocatalyst in this project. In this study, the synthesis of the nanocatalyst (FeO@NFC@NSalophCu)COH was explained in a step-by-step manner. Confirmation of the structure was obtained based on FT-IR, EDX, FE-SEM, TEM, XRD, VSM, DLS, TGA, H-NMR, and CHNO analyses. The catalyst was applied to the synthesis of 5-substituted-1-tetrazole and 1-substituted-1-tetrazole derivatives through multi-component reactions (MCRs), and the performance was assessed. With advances in science and technology and increasing environmental pollution, the use of reagents and methods that are less dangerous for the environment has received much attention. Therefore, following green chemistry principles, with the help of the (FeO@NFC@NSalophCu)COH salen complex as a nanocatalyst that is recyclable, cheap, safe, and available, the use of water as a green solvent, and reduced reaction times, the synthesis of tetrazoles can be achieved.
如今,大多数合成方法旨在在更高效的条件下进行反应,并实现绿色化学的十二条原则。由于四唑在各个行业,尤其是药物化学领域的重要性和广泛应用,以及纳米催化剂在制备有价值的化学反应产物中的应用不断扩展,我们决定在本项目中使用(FeO@NFC@NSalophCu)COH纳米催化剂。在本研究中,逐步阐述了纳米催化剂(FeO@NFC@NSalophCu)COH的合成过程。通过傅里叶变换红外光谱(FT-IR)、能谱分析(EDX)、场发射扫描电子显微镜(FE-SEM)、透射电子显微镜(TEM)、X射线衍射(XRD)、振动样品磁强计(VSM)、动态光散射(DLS)、热重分析(TGA)、氢核磁共振(H-NMR)和元素分析(CHNO)对其结构进行了确认。将该催化剂应用于通过多组分反应(MCRs)合成5-取代-1-四唑和1-取代-1-四唑衍生物,并对其性能进行了评估。随着科学技术的进步和环境污染的加剧,使用对环境危害较小的试剂和方法受到了广泛关注。因此,遵循绿色化学原则,借助可回收、廉价、安全且易得的(FeO@NFC@NSalophCu)COH席夫碱配合物作为纳米催化剂,使用水作为绿色溶剂,并缩短反应时间,可以实现四唑的合成。