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首页> 外文期刊>The Journal of Chemical Physics >Optically probing Al-O and O-H vibrations to characterize water adsorption and surface reconstruction on alpha-alumina: An experimental and theoretical study
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Optically probing Al-O and O-H vibrations to characterize water adsorption and surface reconstruction on alpha-alumina: An experimental and theoretical study

机译:光学探测Al-O和O-H振动以表征水在α-氧化铝上的吸附和表面重建:一项实验和理论研究

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摘要

Oxide/water interfaces are ubiquitous in a wide variety of applications and the environment. Despite this ubiquity, and attendant decades of study, gaining molecular level insight into water/oxide interaction has proven challenging. In part, this challenge springs from a lack of tools to concurrently characterize changes in surface structure (i.e., water/oxide interaction from the perspective of the solid) and O-H population and local environment (i.e., water/oxide interaction from the water perspective). Here, we demonstrate the application of surface specific vibrational spectroscopy to the characterization of the interaction of the paradigmatic alpha-Al2O3(0001) surface and water. By probing both the interfacial Al-O (surface phonon) and O-H spectral response, we characterize this interaction from both perspectives. Through electronic structure calculation, we assign the interfacial Al-O response and rationalize its changes on surface dehydroxylation and reconstruction. Because our technique is all-optical and interface specific, it is equally applicable to oxide surfaces in vacuum, ambient atmospheres and at the solid/liquid interface. Application of this approach to additional alumina surfaces and other oxides thus seems likely to significantly expand our understanding of how water meets oxide surfaces and thus the wide variety of phenomena this interaction controls. (C) 2015 AIP Publishing LLC.
机译:氧化物/水界面在各种各样的应用和环境中无处不在。尽管无处不在,并且伴随了数十年的研究,但获得对水/氧化物相互作用的分子水平的洞察力却被证明具有挑战性。这种挑战部分源于缺乏同时表征表面结构(即,从固体的角度来看,水/氧化物相互作用)以及OH种群和局部环境(即,从水的角度来看,水/氧化物相互作用)变化的工具。在这里,我们演示了表面特定振动光谱在表征范例Al-Al2O3(0001)表面与水的相互作用中的应用。通过探测界面Al-O(表面声子)和O-H光谱响应,我们从两个角度描述了这种相互作用。通过电子结构计算,我们分配了Al-O界面响应,并合理化了其在表面脱羟基和重建过程中的变化。因为我们的技术是全光学的和界面特定的,所以它同样适用于真空,环境大气以及固/液界面的氧化物表面。因此,将这种方法应用于其他氧化铝表面和其他氧化物似乎很可能极大地扩展了我们对水如何与氧化物表面相遇的理解,并因此扩展了这种相互作用所控制的各种现象。 (C)2015 AIP Publishing LLC。

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