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Template free synthesize mesoporous manganese dioxides for nater treatment

机译:模板免费合成中孔锰二氧化氮待遇

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摘要

Mesoporous materials present infinite application prospect for their special pore structure and large specific surface area. However,the synthesis process of mesoporous transition metal oxides always needs a template such as mesoporous silica to create the porous structure, thus the synthesis technology became complicated and energy consumption. In this work, 3D mesoporous MnO2 microsphere have been successfully prepared by a facile and simple hydrothermal process through introducing a certain amount of Ni2+. A high specific surface area (426 m(2)/g) was realized due to the mesoporous and ultrathin nanosheets structure. Owing to the special pore structure and 3D morphology assembled with ultrathin nanosheets (similar to 4 nm). These 3D mesoporous Mn-O2 shows a high-efficiency catalytic activity contrast with commercial MnO2 and ID MnO2 nanorods and displays admirable repeatability as well as structure stability in dye degradation.
机译:中孔材料为其特殊孔隙结构和大型表面积提供无限应用前景。 然而,中孔过渡金属氧化物的合成方法总是需要诸如中孔二氧化硅的模板以产生多孔结构,因此合成技术变得复杂,能耗。 在这项工作中,通过引入一定量的Ni2 +,通过容易和简单的水热过程成功地制备了3D中孔MnO2微球。 由于中孔和超薄纳米片结构,实现了高比表面积(426μm(2)/ g)。 由于采用超薄纳米片(类似于4nm)的特殊孔结构和3D形态。 这些3D中孔MN-O2显示了与商业MNO2和ID MNO2纳米棒对比的高效催化活性,并显示出令人透湿的可重复性以及染料降解中的结构稳定性。

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