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Evolution of anatase surface active sites probed by in situ sum-frequency phonon spectroscopy

机译:原位和频声子光谱探测锐钛矿表面活性位的演变

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Surface active sites of crystals often govern their relevant surface chemistry, yet to monitor them in situ in real atmosphere remains a challenge. Using surface-specific sum-frequency spectroscopy, we identified the surface phonon mode associated with the active sites of undercoordinated titanium ions and conjoint oxygen vacancies, and used it to monitor them on anatase (TiO2) (101) under ambient conditions. In conjunction with theory, we determined related surface structure around the active sites and tracked the evolution of oxygen vacancies under ultraviolet irradiation. We further found that unlike in vacuum, the surface oxygen vacancies, which dominate the surface reactivity, are strongly regulated by ambient gas molecules, including methanol and water, as well as weakly associated species, such as nitrogen and hydrogen. The result revealed a rich interplay between prevailing ambient species and surface reactivity, which can be omnipresent in environmental and catalytic applications of titanium dioxides.
机译:晶体的表面活性位点通常控制着它们的相关表面化学性质,但是在真实大气中原位监测它们仍然是一个挑战。使用表面特定的和频光谱,我们确定了与配位不足的钛离子和联合氧空位的活性位相关的表面声子模式,并用其监测了锐钛矿(TiO 2 )(101 )在环境条件下。结合理论,我们确定了活性部位周围的相关表面结构,并跟踪了紫外线照射下氧空位的演变。我们进一步发现,与真空不同,支配表面反应性的表面氧空位受周围气体分子(包括甲醇和水)以及弱缔合物种(如氮气和氢气)的强烈调节。结果表明,主要的环境物种与表面反应性之间存在丰富的相互作用,这在二氧化钛的环境和催化应用中无处不在。

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