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Spectroscopic evidence for the formation of 3-D crystallites during isothermal heating of amorphous ice on Pt(111)

机译:等温加热Pt(111)上无定形冰的过程中形成3-D微晶的光谱证据

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The formation of crystalline ice through isothermal heating of 80 layers amorphous ice on Pt(111) at 150 K is studied using X-ray photoelectron spectroscopy and infrared reflection absorption spectroscopy. An early indicator for inhomogeneous crystallization is provided by the uncharacteristically high Pt 4f photoelectron peak for crystalline ice compared with the corresponding uniformly thick amorphous case. O 1s photoelectron spectra unambiguously show that the first monolayer is exposed after crystallization at multilayer total coverage. Using the relative intensities between the first monolayer and multilayer contributions to the O 1s photoelectron spectra, we estimated that ~46% and ~80% of the first monolayer is exposed to vacuum with an average crystallite height of ~41 and ~31 layers for an equivalent total coverage of ~23 and ~7 layers, respectively.
机译:利用X射线光电子能谱和红外反射吸收光谱法研究了在150 K下等温加热Pt(111)上80层非晶态冰形成的结晶冰。与相应的均匀厚的非晶态情况相比,结晶冰的非典型高Pt 4f光电子峰提供了不均匀结晶的早期指示。 O 1s光电子能谱清楚地显示出第一单层在结晶后以多层总覆盖率曝光。利用第一单层和多层对O 1s光电子能谱的贡献的相对强度,我们估计第一单层的〜46%和〜80%暴露于真空中,平均微晶高度为〜41和〜31层。等效总覆盖率分别为〜23和〜7层。

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