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Facile Synthesis of Co3O4 Nanoparticle-Functionalized Mesoporous SiO2 for Catalytic Degradation of Methylene Blue from Aqueous Solutions

机译:Co3O4纳米粒子官能化介孔SiO2的易于合成催化溶液亚甲基蓝催化降解

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摘要

In this study, a series of Co3O4 nanoparticle-functionalized mesoporous SiO2 (Co−SiO2) were successfully synthesized via a spontaneous infiltration route. Co species were firstly infiltrated into the confined spaces between the surfactant and silica walls, with the assistance of grinding CoCl3·6H2O and the as-prepared mesoporous SiO2. Then, Co3O4 nanoparticles (NPs) were formed and grown in the limited space of the mesopores, after calcination. Structures, morphologies, and compositions of the materials were characterized by X-ray diffraction, transmission electron microscopy, energy dispersion spectrum, N2 adsorption, and Fourier transform infrared spectra. Results showed that the high content of Co (rCo:Si = 0.17) can be efficiently dispersed into the mesoporous SiO2 as forms of Co3O4 NPs, and the structural ordering of the mesoporous SiO2 was well-preserved at the same time. The Co3O4 NP functionalized mesoporous SiO2 materials were used as Fenton-like catalysts for removing methylene blue (MB) from aqueous solutions. The catalyst prepared at rCo:Si = 0.17 could completely remove the high-concentration of MB (120 mg·L−1), and also showed an excellent performance with a removal capacity of 138 mg·g−1 to 180 mg·L−1 of MB. Catalytic mechanisms were further revealed, based on the degradation results.
机译:在该研究中,通过自发渗透途径成功地合成了一系列CO3O4纳米颗粒官能化的介孔SiO 2(CO-SiO 2)。首先将CO物种渗透到表面活性剂和二氧化硅壁之间的限制空间中,在磨削的COCl3·6H2O和制备的介孔SiO 2的辅助方面是辅助的。然后,在煅烧后形成并在中孔的有限空间中形成并生长在甲基化的有限空间中。通过X射线衍射,透射电子显微镜,能量分散谱,N2吸附和傅里叶变换红外光谱表征材料的结构,形态和组合物。结果表明,钴(RCO:SI = 0.17)的高含量可有效地分散到所述介孔二氧化硅作为四氧化三钴的NP的形式,并且在同一时间中孔SiO 2的结构顺序被保存完好。 CO3O4 NP官能化介孔SiO2材料用作芬顿催化剂,用于从水溶液中除去亚甲基蓝(MB)。在RCO:Si = 0.17中制备的催化剂可以完全除去高浓度的Mb(120mg·L-1),还显示出优异的性能,除去容量为138mg·g-1至180mg·l- 1个MB。基于降解结果,进一步揭示了催化机制。

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