Zeynizadeh Behzad, Rahmani Soleiman
Faculty of Chemistry, Urmia University Urmia 5756151818 Iran
RSC Adv. 2019 Mar 11;9(14):8002-8015. doi: 10.1039/c9ra00177h. eCollection 2019 Mar 6.
In this study, the synthesis of a new class of magnetic clay-based nanocomposites by bridging of sulfonyl groups between copper-immobilized nickel ferrite (NiFeO@Cu) and activated montmorillonite is described. Synthesis of the clay nanocatalyst was carried out the activation of montmorillonite by ClSOH to afford sulfonated montmorillonite. The modified montmorillonite was then reacted with copper-layered nickel ferrite to afford the magnetic clay nanocomposite [(NiFeO@Cu)SO(MMT)]. Next, the characterization of porous materials was carried out using scanning electron microscopy, energy-dispersive X-ray spectroscopy, X-ray diffraction, Fourier transform infrared spectroscopy, Brunauer-Emmett-Teller and vibrating sample magnetometer analyses. The obtained results showed that the clay nanocomposite containing a sulfonyl-bridge has a large surface area and magnetic properties the prepared one without the sulfonyl groups as (NiFeO@Cu)(MMT). The nanostructured clay had excellent catalytic activity towards the Hantzsch synthesis of coumarin-based 1,4-dihydropyridines one-pot and three-component condensation of 4-hydroxycoumarin, aromatic aldehydes and ammonia. All reactions were carried out in water as a green and economic green solvent within 10-45 min to affords 1,4-DHPs in high to excellent yields. Reusability of the clay nanocomposite was investigated for six consecutive cycles without significant loss of catalytic activity. Based on this study, therefore, sulfonated montmorillonite could be considered an excellent support for the immobilization of magnetic materials.
在本研究中,描述了通过在固定铜的镍铁氧体(NiFeO@Cu)和活性蒙脱土之间桥连磺酰基来合成一类新型的磁性粘土基纳米复合材料。粘土纳米催化剂的合成是通过用ClSOH活化蒙脱土以得到磺化蒙脱土来进行的。然后将改性蒙脱土与铜层状镍铁氧体反应以得到磁性粘土纳米复合材料[(NiFeO@CuCuFeO@Cu)SO(MMT)]。接下来,使用扫描电子显微镜、能量色散X射线光谱、X射线衍射、傅里叶变换红外光谱、布鲁诺尔-埃米特-泰勒法和振动样品磁强计分析对多孔材料进行表征。所得结果表明,含有磺酰桥的粘土纳米复合材料具有比未含磺酰基的制备材料((NiFeO@Cu)(MMT))更大的表面积和磁性。这种纳米结构的粘土对基于香豆素的1,4-二氢吡啶的汉茨希合成(4-羟基香豆素、芳香醛和氨的一锅三组分缩合反应)具有优异的催化活性。所有反应均在水作为绿色且经济的绿色溶剂中进行,反应时间为10 - 45分钟,以高至优异的产率得到1,4-二氢吡啶。对粘土纳米复合材料的可重复使用性进行了连续六个循环的研究,其催化活性没有明显损失。因此,基于本研究,磺化蒙脱土可被认为是固定磁性材料的优异载体。