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Preparation and Dye Degradation Performances of Self-Assembled MXene-Co3O4 Nanocomposites Synthesized via Solvothermal Approach

机译:溶剂热法合成自组装MXene-Co3O4纳米复合材料的制备及染料降解性能

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Two-dimensional metal carbides or nitrides (MXenes) demonstrated wide applications in energy storage, water treatment, electromagnetic shielding, gas/biosensing, and photoelectrochemical catalysis due to their higher specific surface area and excellent conductivity. They also have the advantages of flexible and adjustable components and controllable minimum nanolayer thickness. In this study, a cube-like Co3O4 particle-modified self-assembled MXene (Ti3C2) nanocomposite has been prepared successfully by a simple solvothermal method. The Co3O4 particles are well dispersed on the surface and inner layers of the Ti3C2 sheets, which effectively prevent the restacking of Ti3C2 sheets and form an organized composite structure. The physical properties of these nanocomposites were studied by using XRD, SEM, EDX, TEM, and XPS. The performance of the obtained samples was evaluated as new nanocatalysts for degrading methylene blue and Rhodamine B in batch model experiments. The prepared Mxene-Co3O4 nanocomposites can be well regenerated and reused for eight consecutive cycles, indicating potential wide applications in wastewater treatment and composite materials.
机译:二维金属碳化物或氮化物(MXenes)具有较高的比表面积和出色的导电性,因此在能量存储,水处理,电磁屏蔽,气体/生物传感和光电化学催化方面得到了广泛的应用。它们还具有柔性和可调节的组件以及可控的最小纳米层厚度的优点。在这项研究中,通过简单的溶剂热方法成功地制备了立方体状的Co3O4颗粒改性的自组装MXene(Ti3C2)纳米复合材料。 Co3O4颗粒很好地分散在Ti3C2薄板的表面和内层上,有效地防止了Ti3C2薄板的重新堆积并形成有组织的复合结构。通过使用XRD,SEM,EDX,TEM和XPS研究了这些纳米复合材料的物理性质。在批处理模型实验中,将获得的样品的性能评价为降解亚甲基蓝和若丹明B的新型纳米催化剂。所制备的Mxene-Co3O4纳米复合材料可以很好地再生并连续八个循环重复使用,表明在废水处理和复合材料中的潜在广泛应用。

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