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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Water oxidation catalysis by using nano-manganese ferrite supported 1D-(tunnelled), 2D-(layered) and 3D-(spinel) manganese oxides
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Water oxidation catalysis by using nano-manganese ferrite supported 1D-(tunnelled), 2D-(layered) and 3D-(spinel) manganese oxides

机译:纳米锰铁氧体负载1D-(隧道形),2D-(层状)和3D-(尖晶石)锰氧化物的水氧化催化

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摘要

We report a new series of core-shell composite catalysts obtained by supporting 1D-(tunnelled), 2D-(layered) and 3D-(spinel) manganese oxides on nano-manganese ferrite. All other factors being equal, magnetic 2D-MnOx structures carried out the chemical water oxidation reaction with Ce4+ at a higher efficiency than their 1D-, 3D- and non-magnetic counterparts. Ca-birnessite, when supported on a ferrite core, produced the highest amount of O-2 [3900 mmol (O-2) per mot (Mn) per hl normalized per mot of manganese in the catalysts. The composition and morphology parameters of the magnetic core-shell structures appeared to be important in determining the observed activity while no direct correlation was noted with the surface area.
机译:我们报告了通过在纳米锰铁氧体上负载1D-(隧道状),2D-(层状)和3D-(尖晶石)锰氧化物而获得的一系列新的核-壳复合催化剂。在所有其他因素相同的情况下,磁性2D-MnOx结构与Ce4 +进行化学水氧化反应的效率高于其1D-,3D-和非磁性对应物。钙水钠锰矿负载在铁氧体磁芯上时,在催化剂中每mol锰标准化的hl产生最高量的O-2 [3,900 mol(O-2)每mot(Mn)。磁性核-壳结构的组成和形态学参数对于确定观察到的活性似乎很重要,而与表面积没有直接相关性。

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