首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Characterization and Oxidation of Fe Nanoparticles Deposited onto Highly Oriented Pyrolytic Graphite, Using X-ray Photoelectron Spectroscopy
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Characterization and Oxidation of Fe Nanoparticles Deposited onto Highly Oriented Pyrolytic Graphite, Using X-ray Photoelectron Spectroscopy

机译:X射线光电子能谱法表征和沉积高取向热解石墨上的铁纳米粒子的氧化。

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The characterization of Fe~0 nanoparticles (NPs), both before and during oxidation, has been of concern for the last two decades. We have studied the 2p and 3p XPS core levels of Fe NPs evaporated onto highly oriented pyrolytic graphite (HOPG) under ultrahigh vacuum. Both components of the 2p spectrum of Fe~0 are found to be highly asymmetric to higher binding energy; each is composed of a major photoemission peak, plus several smaller peaks attributable to a vacancy cascade, a process known to occur in Fe. In contrast, the two Fe 3p spectral components are too close to be separated with precision, and were treated as one single component; as with the 2p components, it, too, is asymmetric, due to the vacancy cascade. The onset of oxidation affects both spectra somewhat differently, causing the introduction, and subsequent increase, of components on the high binding energy side of the 2p_(3/2) spectrum, superimposed on the. vacancy cascade; this is not as obvious for the 3p spectrum because of a larger probe depth, to which the surface contributes less. These new components represent the FeO, γ-Fe2O3, and Fe3O4 formed on oxidation; their oxidation kinetics indicate that the initially formed FeO is rate controlling.
机译:在过去的二十年中,一直关注氧化前和氧化过程中Fe〜0纳米粒子(NPs)的表征。我们已经研究了在超高真空下蒸发到高度取向的热解石墨(HOPG)上的铁NP的2p和3p XPS核心能级。发现Fe〜0 2p光谱的两个成分对较高的结合能高度不对称。每个峰均由一个主要的光发射峰以及几个空位级联引起的较小峰组成,空位级联是众所周知的在铁中发生的过程。相反,两个Fe 3p光谱成分太接近而无法精确分离,因此被视为一个单一成分。与2p组件一样,由于空位级联,它也是不对称的。氧化的开始对两个光谱的影响有些不同,从而导致叠加在2p_(3/2)光谱的高结合能侧的组分的引入和随后的增加。职位空缺对于3p光谱来说,这不是很明显,因为探头深度更大,而表面的贡献较小。这些新成分代表在氧化作用下形成的FeO,γ-Fe2O3和Fe3O4。它们的氧化动力学表明最初形成的FeO是速率控制的。

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