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Boosted visible-light photocatalytic activity and retarded carrier recombination of Eu3+-doped Nb3O7F nanomaterials prepared by hydrothermal method

机译:通过水热法制备Eu3 +掺杂Nb3O7F纳米材料的促进可见光光催化活性和延迟载体重组

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摘要

Novel trivalent europium (Eu3+)-doped niobium oxyfluoride (Nb3O7F) nanomaterials with retarded carrier recombination and enhanced photocatalytic activity were successfully synthesized by a facile hydrothermal method. Through changing the doping ratio of Eu3+ ions, the phase, composition, morphology, absorption spectra and photocatalytic properties were investigated in detail. The results showed that Eu3+ ions were successfully incorporated into the interstitial sites of Nb3O7F crystal lattice. With the increase of Eu3+ amounts, the morphology gradually changed from nanowall to irregular nanoparticle. Meanwhile, incorporation of Eu3+ ions had a slight influence on the light absorption. However, Eu3+-doped samples exhibited excellent photodegradation activity towards Rhodamine B dyes. The improvement may be ascribed to higher specific surface area, and lower carrier recombination prohibited by forming Eu3+/Eu2+ self-redox centers. This work envisages that Eu3+-doped Nb3O7F nanomaterials may be a promising kind of photocatalysts.
机译:通过容易水热法成功地合成了具有延迟载体重组和增强的光催化活性的新型三价铕(EU3 +)掺杂的氧化铌氧化铌(NB3O7F)纳米材料。通过改变EU3 +离子的掺杂比,详细研究了相,组合物,形态,吸收光谱和光催化性质。结果表明,EU3 +离子成功掺入NB3O7F晶格的间隙位点。随着EU3 +量的增加,形态从纳米瓦尔逐渐变为不规则的纳米颗粒。同时,Eu3 +离子的掺入对光吸收有轻微影响。然而,Eu3 +掺杂的样品对罗丹明B染料的优异的光降解活性表现出优异的光降解活性。通过形成Eu3 + / Eu2 +自氧化还原中心,可以归因于更高的比表面积,更低的载体重组。这项工作设想,Eu3 + - 掺杂的Nb3O7F纳米材料可能是一种有希望的光催化剂。

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