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首页> 外文期刊>RSC Advances >Exploration of octahedrally shaped MnCo2O4 catalyst particles for visible light driven photocatalytic water splitting reaction
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Exploration of octahedrally shaped MnCo2O4 catalyst particles for visible light driven photocatalytic water splitting reaction

机译:用于可见光驱动的光催化水分解反应的八面体形MnCo2O4催化剂颗粒的探索

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MnCo2O4 catalyst with a smooth octahedral geometry and a band gap of 2.11 eV was developed for a visible light driven photocatalytic water splitting process considering the crucial role of Co(III)OH centres in Co3O4 catalysts, as well as cobalt(II) oxide and Mn3+ centres in the most active Mn2O3 catalyst towards photocatalytic water splitting process. The formation of the MnCo2O4 catalyst was confirmed by XRD, EDAX and XPS. The smooth octahedral geometry of most of the crystals synthesized was visualized via FE-SEM analysis. The photocatalytic efficiency of the catalyst was analyzed with respect to time, presence of sacrificial agent (methanol) and in presence of direct sunlight. 0.08 g of the catalyst produced about 33 mL of gaseous products from 20 mL of water after 95 minutes of visible light irradiation (lambda > 420 nm). The overall water splitting efficiency was increased in the presence of a small amount of methanol; hydrogen GC spectra revealed that evolved hydrogen gas produced in the presence of methanol was extra pure. The reusability analysis revealed that the synthesized catalyst could be reused after the activation process possibly due to the surface restructuring of the active centres of the catalyst during the continuous water splitting process. There was a slight decrease in the activity of the reused catalyst due to the decrease in concentration of the octahedrally shaped crystals, as evidenced by the FE-SEM analysis. These results revealed that the developed octahedrally shaped MnCo2O4 catalyst will be an essential part for the future generation of visible light driven water splitting catalysts.
机译:考虑到Co(III)OH中心在Co3O4催化剂以及氧化钴(II)和Mn(3+)中的关键作用,开发了具有光滑八面体几何形状和带隙为2.11 eV的MnCo2O4催化剂,用于可见光驱动的光催化水分解工艺。在活性最强的Mn2O3催化剂中集中于光催化水分解过程。通过XRD,EDAX和XPS确认了MnCo 2 O 4催化剂的形成。通过FE-SEM分析可以看到大多数合成晶体的光滑八面体几何形状。针对时间,牺牲剂(甲醇)的存在和直射阳光的存在,分析了催化剂的光催化效率。在95分钟的可见光照射(λ> 420 nm)之后,0.08 g的催化剂从20 mL水中产生约33 mL气态产物。在少量甲醇的存在下,总的水分解效率提高了。氢GC光谱显示,在甲醇存在下产生的析出氢气是超纯的。可重用性分析表明,合成的催化剂在活化过程后可以重复使用,这可能是由于连续水分解过程中催化剂活性中心的表面结构发生了变化。 FE-SEM分析表明,由于八面体形晶体浓度的降低,再利用催化剂的活性略有降低。这些结果表明,开发的八面体形状的MnCo2O4催化剂将是未来可见光驱动的水分解催化剂的重要组成部分。

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