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Noncrystalline Titanium Oxide Catalysts for ElectrochemicalOxygen Reduction Reactions

机译:电化学用非晶态二氧化钛催化剂氧还原反应

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摘要

Titanium oxides crystals are widely used in a variety of fields, but little has been reported on the functionalities of noncrystalline intermediates formed in their structural transformation. We measured the oxygen reduction reaction activity of titanium oxide nanoparticles heat-treated for a different time and found that the activity abruptly increased at a certain time of the treatment. We analyzed their structures by using X-ray pair distribution functions with the help of high-resolution transmission electron microscopy and X-ray photoelectron spectroscopy and ascertained that the abrupt increase in the activity corresponded to a structural transformation from a reduced lepidocrocite-type layered titanate to a disordered structure consisting of domains of brookite-like TiO6 octahedral linkages. The further treatment transformed these brookite-like domains into another phase having more edge-sharing sites like the TiO-type cubic structure. This finding would position noncrystalline, disordered structure as a possible origin of the catalytic activity, though nanocrystalline rutile particles might be also consideredas the origin.
机译:钛氧化物晶体广泛用于各种领域,但是关于在其结构转变中形成的非晶态中间体的功能的报道很少。我们测量了在不同时间热处理的二氧化钛纳米颗粒的氧还原反应活性,发现该活性在处理的特定时间突然增加。我们借助高分辨率透射电子显微镜和X射线光电子能谱,通过使用X射线对分布函数分析了它们的结构,并确定了活性的突然增加对应于还原的纤铁矿型层状钛酸盐的结构转变。由板钛矿状TiO6八面体键域组成的无序结构。进一步的处理将这些板钛矿状晶域转变为另一个具有更多边缘共享位点的相,如TiO型立方结构。这一发现将把非晶态,无序结构定位为催化活性的可能来源,尽管也可以考虑使用纳米晶金红石颗粒。作为起源。

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