Department of Applied Chemistry, Faculty of Pharmaceutical Chemistry, Pharmaceutical Sciences Branch, Islamic Azad University (IAUPS), Tehran, Iran; Young Researchers and Elite Club, Pharmaceutical Sciences Branch, Islamic Azad University (IAUPS), Tehran, Iran.
Drug Delivery System Research Center, Pharmaceutical Sciences Branch, Islamic Azad University (IAUPS), Tehran, Iran.
J Colloid Interface Sci. 2017 Nov 15;506:10-26. doi: 10.1016/j.jcis.2017.06.100. Epub 2017 Jun 30.
In this study, a new supported cobalt nanocatalyst has been described. The FeO magnetic nanoparticles (FeO MNPs) modified by SiO/aminopropyl trimethoxy silane/cyanuric chloride (FeO@SiO-APTMS/CC) utilized for anchoring metformin-cobalt complex (FeO Ms@SiO-APTMS/CC/Met@Co(II)). The structure of novel complex well defined by elemental analysis, ICP, AAS, BET, FT-IR, EDX, SEM, TEM, DLS, XRD, TG-DTG, VSM and XPS. The catalytic efficiency of the synthesized cobalt nanocatalyst was studied in the oxidation of ethylbenzene (EB), cyclohexene (CYHE) and various oximes using molecular oxygen as ecofriendly oxidant and high catalytic activity and selectivity toward oxidation is observed. Selective aerobic oxidation of EB and CYHE and various oximes catalyzed by the cobalt nanocatalyst without any reducing agent by using N-hydroxyphthalimide (NHPI), gave acetophenone (AcPO), 2-cyclohexene-1-one and corresponding carbonyl compounds respectively, as major products. To achieve high level of efficiency of heterogeneous nanocatalyst, various parameters such as the ratio and amount of nanocatalyst/NHPI, reaction time, temperature and solvents were evaluated. The easily preparation from inexpensive and commercially available reagent, thermal stability, suitable performance in reusability, high efficiency and selectivity in oxidation reactions, short reaction time, easy recovery and separation from reaction mixture, are advantages of this novel catalyst.
在这项研究中,描述了一种新型负载钴纳米催化剂。通过 SiO/氨基丙基三甲氧基硅烷/三聚氰胺(FeO@SiO-APTMS/CC)对 FeO 磁性纳米颗粒(FeO MNPs)进行修饰,用于固定二甲双胍-钴配合物(FeO Ms@SiO-APTMS/CC/Met@Co(II))。通过元素分析、ICP、AAS、BET、FT-IR、EDX、SEM、TEM、DLS、XRD、TG-DTG、VSM 和 XPS 对新型配合物的结构进行了明确的定义。研究了合成的钴纳米催化剂在氧化乙基苯(EB)、环己烯(CYHE)和各种肟中的催化效率,使用分子氧作为环保氧化剂,表现出高催化活性和选择性。在没有任何还原剂的情况下,通过使用 N-羟基邻苯二甲酰亚胺(NHPI),钴纳米催化剂选择性地催化 EB 和 CYHE 以及各种肟的有氧氧化,分别得到苯乙酮(AcPO)、2-环己烯-1-酮和相应的羰基化合物作为主要产物。为了实现多相纳米催化剂的高效水平,评估了各种参数,如纳米催化剂/NHPI 的比例和用量、反应时间、温度和溶剂。该催化剂具有容易从廉价和市售试剂制备、热稳定性、在重复使用方面的良好性能、在氧化反应中具有高效率和选择性、反应时间短、易于从反应混合物中回收和分离等优点。