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首页> 外文期刊>E-Journal of Surface Science and Nanotechnology >Carbon Monoxide Adsorption on Cobalt-Deposited Platinum Single Crystal Surfaces Investigated by IR Reflection-Absorption and Low-Energy Electron Diffraction
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Carbon Monoxide Adsorption on Cobalt-Deposited Platinum Single Crystal Surfaces Investigated by IR Reflection-Absorption and Low-Energy Electron Diffraction

机译:红外反射吸收和低能电子衍射研究钴沉积铂单晶表面上的一氧化碳吸附

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摘要

Infrared reflection absorption spectroscopy (IRRAS) was used to investigate carbon monoxide (CO) adsorption on Co deposited Pt(111) (Co/Pt(111)) and Pt(100) (Co/Pt(100)) (Co thickness = 0.15, 0.3 and 0.6 nm) bimetallic surfaces.The 1.0-L-CO exposure to a clean Pt(111) at room temperature yielded linear-bonded and bridge-bonded CO-Pt bands at 2092 and 1850 cm~(-1).The Co depositions onto the Pt(111) at 333 K brought about the small hexagons of satellites on the low-energy electron diffraction (LEED) patterns, even for the Co thickness of 0.15 nm.The CO-Pt IRRAS band intensities for the 333-K-fabricated Co/Pt(111) surfaces decreased with increasing Co thickness.The CO-Pt bands almost disappeared for the 6nm-thick-Co/Pt(111) surface and the band at 2000 cm~(-1) that ascribable to CO-Co bonds dominated the spectra.The results indicated that the deposited Co grows epitaxially on the 333-K-Pt(111) substrate.In contrast, the 693-K-fabricated 0.3nm-thick-Co/Pt(111) which showed a clear p(1×1) LEED pattern yielded a single absorption band at 2067 cm~(-1) originated from adsorbed CO on the Pt site influenced by neighbored Co atoms.As for the cleaned Pt(100) substrate surface, the LEED pattern showed a hex-reconstructed pattern and the 1.0-L-CO exposed surface arose two absorption bands at 2086 and 2076 cm~(-1), which can be ascribed respectively to linearly bonded CO on Pt in the 1×1 and hex domains.The Co depositions onto the 333-K-Pt(100)-hex substrate surface lift the hex reconstruction.The adsorbed CO on the 333-K-fabricated 0.3nm-thick-Co/Pt(100)-hex revealed a single absorption band at 2059 cm~(-1).In contrast to the 333-K-fabricated surface, the 693-K-fabricated 0.3nm-thick-Co/Pt(100)-hex showed the hex-like reconstruction: the 1.0-L-CO exposure to the 693-K-fabricated surface resulted in an adsorbed CO band at 2073 cm~(-1) accompanied with a shoulder at 2059 cm~(-1). The results obtained suggest that the deposited Co atoms are easy to incorporated into the Pt(100)-hex substrate surface in comparison to the Pt(111).
机译:红外反射吸收光谱(IRRAS)用于研究一氧化碳(CO)在Co沉积的Pt(111)(Co / Pt(111))和Pt(100)(Co / Pt(100))上的吸附(Co厚度= 0.15 ,0.3和0.6 nm)双金属表面。在室温下将1.0-L-CO暴露于干净的Pt(111)中会在2092和1850 cm〜(-1)处产生线性键合和桥键键合的CO-Pt带。即使在0.15 nm的Co厚度下,在333 K的Co沉积在Pt(111)上也会产生卫星的小六边形,即使是在0.15 nm的Co厚度下.333-的Co-Pt IRRAS谱带强度也是如此K制作的Co / Pt(111)表面随着Co厚度的增加而减小,厚度为6nm的Co / Pt(111)表面的Co-Pt带几乎消失,而在2000 cm〜(-1)处的带几乎消失了。 CO-Co键占主导地位,结果表明沉积的Co在333-K-Pt(111)衬底上外延生长,而693-K制备的0.3nm厚的Co / Pt(111)显示出清晰的p(1×1) LEED图案在2067 cm〜(-1)处产生单个吸收带,该吸收带是受相邻Co原子影响的Pt位点上吸附的CO所引起的。对于清洁的Pt(100)衬底表面,LEED图案显示为十六进制重构的图案,并且1.0-L-CO暴露的表面在2086和2076 cm〜(-1)处出现两个吸收带,可以分别归因于1x1和hex域中Pt上线性键合的CO.Co沉积在333- K-Pt(100)-hex衬底表面提升了hex重建。在333-K制备的0.3nm厚Co / Pt(100)-hex上吸附的CO在2059 cm〜(-1)处显示单个吸收带与333-K制成的表面相比,693-K制成的0.3nm厚Co / Pt(100)-hex显示出类似十六进制的结构:1.0-L-CO暴露于693-K K加工的表面在2073 cm〜(-1)处产生了CO吸收带,并在2059 cm〜(-1)处产生了肩带。获得的结果表明,与Pt(111)相比,沉积的Co原子更容易掺入Pt(100)-六角衬底表面。

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