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首页> 外文期刊>RSC Advances >Experimental and theoretical study on the reactivity of maghemite doped with Cu2+ in oxidation reactions: structural and thermodynamic properties towards a Fenton catalyst
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Experimental and theoretical study on the reactivity of maghemite doped with Cu2+ in oxidation reactions: structural and thermodynamic properties towards a Fenton catalyst

机译:掺杂Cu2 +的磁赤铁矿在氧化反应中的反应性的实验和理论研究:Fenton催化剂的结构和热力学性质

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摘要

In this work, a polymeric method was used to prepare undoped and Cu-doped iron oxide catalysts for the H2O2 decomposition reaction. These catalysts were characterized by powder X-ray diffractometry (XRD), scanning electronic microscopy (SEM) coupled to an energy dispersive X-ray spectrometer (EDX), and H-2-Temperature Programmed Reduction (H-2-TPR). The SEM images show an inhomogeneous particle cluster in both samples, tending to decrease in size with Cu-doping. EDX mapping reveals a good dispersion of Cu2+ in the iron oxide. In addition, Rietveld refinement of the XRD patterns reveals that the samples are constituted of hematite and maghemite, but only maghemite has octahedral Fe3+ ions isomorphically replaced by 2 wt% Cu2+. Cu-doping produces an active catalyst for H2O2 decomposition. Tests using phenol show the strong inhibition of H2O2 decomposition by the Cu-doped catalysts, suggesting that H2O2 may be decomposed via a radical mechanism. Furthermore, phenol degradation kinetics confirm that the doping of maghemite with Cu2+ brings about a significant improvement in catalytic activity. Theoretical calculations reveal that Cu-doping in maghemite produces low electronic density sites, favoring the interactions between the surface oxygens of H2O2 and Cu2+, thus improving the catalytic activity. This strategy can be extended to other materials to design active heterogeneous catalysts for environmental purposes.
机译:在这项工作中,使用一种聚合方法来制备用于H2O2分解反应的未掺杂和Cu掺杂的氧化铁催化剂。这些催化剂的特征在于粉末X射线衍射法(XRD),耦合到能量色散X射线光谱仪(EDX)的扫描电子显微镜(SEM)和H-2-温度程序化还原(H-2-TPR)。 SEM图像显示两个样品中均不均匀的颗粒团簇,并且随着Cu掺杂而趋于减小尺寸。 EDX映射显示出Cu2 +在氧化铁中的良好分散。此外,X射线衍射图的Rietveld精炼显示样品由赤铁矿和磁赤铁矿组成,但只有磁赤铁矿的八面体Fe3 +离子同构被2 wt%Cu2 +取代。铜掺杂产生了用于H2O2分解的活性催化剂。使用苯酚的测试表明,掺杂Cu的催化剂对H2O2的分解具有很强的抑制作用,表明H2O2可能通过自由基机理分解。此外,苯酚的降解动力学证实,以Cu2 +掺杂磁赤铁矿可显着改善催化活性。理论计算表明,磁赤铁矿中的Cu掺杂产生的电子密度较低,有利于H2O2和Cu2 +的表面氧之间的相互作用,从而提高了催化活性。该策略可以扩展到其他材料,以设计用于环境目的的活性多相催化剂。

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