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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Rutile Surface Properties Beyond the Single Crystal Approach: New Insights from the Experimental Investigation of Different Polycrystalline Samples and Periodic DFT Calculations
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Rutile Surface Properties Beyond the Single Crystal Approach: New Insights from the Experimental Investigation of Different Polycrystalline Samples and Periodic DFT Calculations

机译:单晶方法以外的金红石表面特性:不同多晶样品的实验研究和周期性DFT计算的新见解

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The relationships between particle morphology and surface properties for different kinds of rutile polycrystalline samples have been thoroughly investigated, combining FTIR spectroscopy of CO adsorbed at 60 K through the carbon end on surface Ti~(4+) centers, electron microscopy, and periodic DFT calculations. We provide a complete assignment of the FTIR spectra of CO adsorbed on micro- and nanorutile crystals with well-defined morphology, on commercially sourced nanorutile, and on the P25 rutile component. On the basis of these results, the spectrum of CO on native P251 is revisited. Of special interest is the fact that the (.110) rutile main surface undergoes a thermally induced relaxation process, leading to the shielding of exposed Ti~(4+) sites and consequently to the reduction of the polarizing power. This process can be reversed by inducing an outward relaxation of the shielded Ti atoms by treating the sample in water at 573 IC A red-shifted band ascribed to CO adsorbed through the oxygen end on the low polarizing sites of relaxed surfaces provides the signature of surface relaxation. CO species interacting through the oxygen end have already been studied for CO on zeolites exchanged with low polarizing alkaline cations but not yet properly discussed for CO on metal oxides.
机译:通过结合表面Ti〜(4+)中心碳末端在60 K处吸附的CO的FTIR光谱,电子显微镜和定期DFT计算,对不同类型的金红石型多晶样品的颗粒形态与表面性质之间的关系进行了深入研究。 。我们提供了完全吸附的CO的FTIR光谱图,该FTIR光谱吸附在形态明确,商业来源的纳米金红石和P25金红石组分上的微粉和纳米金红石晶体上。基于这些结果,重新研究了天然P251上的CO光谱。特别令人关注的事实是,(。110)金红石主表面经历了热诱导的弛豫过程,导致屏蔽了暴露的Ti〜(4+)部位,从而导致极化能力降低。通过在573 IC下在水中处理样品,诱导屏蔽的Ti原子向外弛豫,可以逆转此过程。归因于CO的红移谱带通过弛豫表面的低偏振位上的氧端吸附,提供了表面特征松弛。已经研究了与氧极性相互作用的CO物种与低极化碱性阳离子交换的沸石上的CO,但尚未对金属氧化物上的CO进行适当讨论。

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