微波辅助溶胶-凝胶法合成MgO纳米粒子及其催化合成Hantzsch1,4-二氢吡啶性能(英文)

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A microwave-assisted sol-gel method was employed for the preparetion of nano-sized MgO particles using Mg(NO 3)2·6H2O as precursor and deionized water as solvent.The sample calcined at 500℃ had a high specific surface area of 243.2m2/g and particles sizes from 9.5to10.5nm.For comparison,MgO nanoparticles were also synthesized without microwave irradiation.X-ray diffraction (XRD) characterization showed the formation of smaller particles after microwave irradiation.The structure and morphology of the MgO particles were analyzed by N2 adsorption-desorption,XRD,scanning electron microscopy,and transmission electron microscopy.Their catalytic behavior was studied with the one-pot synthesis of Hantzsch1,4-dihydropyridines from the reaction of aromatic aldehydes,ethyl acetoacetate,and ammonium acetate.The MgO nanoparticles have high catalytic activity and gave the desired products in good to high yields.The catalyst can be easily recovered by filtration and was used at least three times with only a slight reduction in its catalytic activity. A microwave-assisted sol-gel method was employed for the preparation of nano-sized MgO particles using Mg (NO 3) 2 · 6H 2 O as precursor and deionized water as solvent. The sample was calcined at 500 ° C had a high specific surface area of ​​243.2 m2 / g and particles sizes from 9.5 to 10.5 nm. For comparison, MgO nanoparticles were also synthesized without microwave irradiation. X- ray diffraction (XRD) characterization showed the formation of smaller particles after microwave irradiation. Structure and morphology of the MgO particles were analyzed by N2 adsorption-desorption, XRD, scanning electron microscopy, and transmission electron microscopy. The roasting behavior was was studied with the one-pot synthesis of Hantzsch 1, 4-dihydropyridines from the reaction of aromatic aldehydes, ethyl acetoacetate, and ammonium acetate. The MgO nanoparticles have high catalytic activity and gave the desired products in good to high yields.The catalyst can be easily recovered by filtration and was used at least three times w ith only a slight reduction in its catalytic activity.
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