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Water adsorption on the hydroxylated H-(1x1) O-ZnO(0001) surface

机译:羟基H-(1x1)O-ZnO(0001)表面的水吸附

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The adsorption of water multilayers on a well defined single crystal, hydroxyl-terminated ZnOsurface, H(1 x 1)-O-ZnO(000 (1) over bar) surface has been investigated using infrared (IR) spectroscopy, helium atom scattering ( HAS) and X-ray photoelectron spectroscopy (XPS). The results reveal the formation of well ordered mono-, bi- and multilayers of D2O and H2O on this substrate. On the bare hydroxyl-covered H(1 x 1) surface the OH-stretch vibration could be clearly identified in the IR-spectra. The water adsorption and desorption kinetics on this hydroxylated surface were studied by monitoring the reflectivity of the surface for helium atoms. The analysis of the data yielded activation energies for desorption of H2O from the H(1 x 1) O-ZnO surface of 55.2 kJ mol(-1). The results reveal the formation of ordered mono- and bilayers. Further exposure to water at 113 K results in the formation of amorphous 3-D islands.
机译:已经使用红外(IR)光谱,氦原子散射法研究了水多层膜在定义明确的单晶,羟基封端的ZnO表面,H(1 x 1)-O-ZnO(000(1)(bar之上))表面上的吸附情况。 HAS)和X射线光电子能谱(XPS)。结果揭示了在该基底上形成D 2 O和H 2 O的有序的单层,双层和多层。在裸露的羟基覆盖的H(1 x 1)表面上,可以在红外光谱中清楚地识别出OH拉伸振动。通过监测氦原子表面的反射率,研究了该羟基化表面上的水吸附和解吸动力学。数据分析得出活化能,用于从H(1 x 1)O-ZnO表面解吸H2O,为55.2 kJ mol(-1)。结果揭示了有序的单层和双层的形成。在113 K下进一步暴露于水会导致形成无定形3-D岛。

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