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Solvothermal synthesis of magnetically separable reduced graphene oxide/Fe3O4 hybrid nanocomposites with enhanced photocatalytic properties

机译:具有增强的光催化性能的抗磁体可分离的石墨烯氧化物/ Fe3O4杂交纳米复合材料的溶剂热合成

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摘要

Magnetically separable reduced graphene oxide/magnetite (rGO/Fe3O4) nanocomposites (NCs) with different mass ratio were synthesized by a solvothermal method. Powder XRD patterns and Raman spectra revealed the crystalline nature and phase formation of as prepared NCs. The chemical interactions of the rGO and Fe3O4 were characterized by FTIR spectroscopy. SEM images showed the particles are embedded uniformly onto the surface of reduced graphene layers and the average diameter of microspheres ranging between 131 and 237 nm. UV-Visdiffuse reflectance spectra showed a red shift in optical band gap with increasing mass fraction of Fe3O4. Magnetic hysteresis loops confirmed that rGO/Fe3O4 NCs exhibit a typical super paramagnetic behavior with zero coercivity and retentivity. The photocatalytic efficiency of rGO/Fe3O4 NCs was evaluated using the degradation of Methylene Blue dye and found to be NCs with mass ratio 1:2(GF(1:2)) exhibited reasonably good stability after 4 successive runs with highest degradation of 74% in 60 min.
机译:通过溶剂热法合成具有不同质量比的磁性可分离的石墨烯氧化物/磁铁矿(RGO / Fe3O4)纳米复合材料(NCS)。粉末XRD图案和拉曼光谱揭示了制备的NCs的结晶性质和相形成。 rgo和Fe3O4的化学相互作用的特征在于FTIR光谱。 SEM图像显示颗粒均匀地嵌入到石墨烯层的表面上,并且微球的平均直径在131至237nm之间。 UV-Visdiffuse反射光谱显示光带间隙中的红色偏移,随着Fe3O4的质量分数增加。磁滞回路确认RGO / Fe3O4 NCS表现出典型的超级顺磁性行为,矫顽力和保持性。使用亚甲基蓝色染料的降解评价Rgo / Fe3O4 NCS的光催化效率,发现具有质量比1:2的NCS(GF(1:2))在4次连续延续后,具有74%的最高降解后的合理良好稳定性在60分钟。

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