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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Hibiscus rosa-sinensis Leaf Extracted Green Methods, Magneto-Optical and Catalytic Properties of Spinel CuFe2O4 Nano- and Microstructures
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Hibiscus rosa-sinensis Leaf Extracted Green Methods, Magneto-Optical and Catalytic Properties of Spinel CuFe2O4 Nano- and Microstructures

机译:芙蓉叶提取绿色方法,尖晶石型CuFe2O4纳米和微结构的磁光和催化性能

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摘要

Spinel CuFe2O4 nano- and microstructures were synthesized by a simple, economical and eco-friendly microwave heating (MHM) and modified sol-gel methods (SGM) using metal nitrates and Hibiscus rosa-sinensis leaf extracted solution, instead of toxic inorganic/organic catalyst, template and surfactant. Powder XRD, FT-IR, EDX and SAED results were confirmed that the as-synthesized products have a single-phase spinel structure with high crystallinity and without the presence of any other secondary phase impurities. The morphology of the samples was revealed by HR-SEM and HR-TEM techniques show that the MHM and SGM products consist of nano- and microstructures, respectively, and their possible formation mechanisms were also proposed. The optical band gap (E (g) ) was measured using Kubelka-Munk model and it shows higher value (2.35 eV) for CuFe2O4-MHM than CuFe2O4-SGM (2.18 eV), due to the smaller particle size of CuFe2O4-MHM. The magnetic property of the samples showed a ferromagnetic behavior and the magnetization (M-s) value of CuFe2O4-MHM is higher i.e. 61.13 emu/g than CuFe2O4-SGM (57.25 emu/g). Both the samples were successfully tested as catalysts for the conversion of benzylic alcohols to respective carbonyls using H2O2 (as oxidant) and acetonitrile (as a solvent) catalytic system. It was found that the CuFe2O4-MHM catalyst show best performance of conversion of aromatic alcohols into aldehydes than that of CuFe2O4-SGM. Spinel CuFe2O4 catalyst is magnetically recyclable and could be reused with no significant loss in catalytic activity as proved for five consecutive cycles.
机译:用金属硝酸盐和芙蓉叶提取液代替有毒的无机/有机催化剂,通过简单,经济,环保的微波加热(MHM)和改进的溶胶-凝胶法(SGM)合成了尖晶石CuFe2O4纳米结构和微观结构。 ,模板和表面活性剂。粉末XRD,FT-IR,EDX和SAED结果被证实,合成后的产物具有高结晶度的单相尖晶石结构,并且不存在任何其他次级相杂质。通过HR-SEM和HR-TEM技术揭示了样品的形貌,表明MHM和SGM产物分别由纳米和微观结构组成,并提出了它们可能的形成机理。使用Kubelka-Munk模型测量了光学带隙(E(g)),由于CuFe2O4-MHM的粒径较小,因此与CuFe2O4-SGM(2.18 eV)相比,CuFe2O4-MHM的值更高(2.35 eV)。样品的磁性显示出铁磁行为,并且CuFe 2 O 4 -MHM的磁化强度(M-s)值比CuFe 2 O 4 -SGM(57.25emu / g)高,即61.13emu / g。使用H2O2(作为氧化剂)和乙腈(作为溶剂)催化体系,成功地测试了这两个样品作为催化剂将苯甲醇转化为相应的羰基的催化剂。发现与CuFe2O4-SGM相比,CuFe2O4-MHM催化剂表现出最佳的将芳族醇转化为醛的性能。尖晶石CuFe2O4催化剂可磁回收,可以连续使用五个周期,证明催化活性没有明显损失。

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