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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Site Switching and Surface Restructuring Induced by NO Adsorption on Pt{110}
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Site Switching and Surface Restructuring Induced by NO Adsorption on Pt{110}

机译:NO吸附在Pt {110}上引起的位点转换和表面重构

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We present the first infrared vibrational study of the adsorption of NO on Pt{110} over a wide range of temperatures. Adsorption is strongly dependent on both temperature and coverage, with many different species being formed on the surface. Under all conditions, site switching is observed during NO adsorption: at low coverages bridge-bonded species are formed on the surface, and at very high coverage NO switches to on-top sites. Other species, not previously reported, are also observed, depending on both adsorption temperature and coverage. The clean Pt{110} surface exhibits a (1 * 2) surface reconstruction which can be lifted by the adsorption of NO (or CO), depending on surface temperature and adsorbate coverage. In contrast to CO adsorption, the on-top surface species shows different frequencies on the (1 * 2) and (1 * 1) surface phases, and this is deployed to identify the temperature at which the reconstruction begins to lift.
机译:我们提出了在宽温度范围内NO吸附在Pt {110}上的第一个红外振动研究。吸附在很大程度上取决于温度和覆盖率,在表面上会形成许多不同的物种。在所有条件下,在NO吸附过程中都会观察到位点转换:在低覆盖率下,表面上会形成桥键结合的物种,而在高覆盖率下,NO则会转换到顶部位点。根据吸附温度和覆盖率,还可以观察到其他以前未报道的物种。干净的Pt {110}表面表现出(1 * 2)表面重构,取决于表面温度和被吸附物覆盖范围,可以通过吸附NO(或CO)来提升表面重构能力。与CO吸附相反,顶部表面物质在(1 * 2)和(1 * 1)表面相上显示出不同的频率,并被用于识别重建开始进行的温度。

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