首页> 外文OA文献 >Analysis of the NiCo\u3csub\u3e2\u3c/sub\u3eO\u3csub\u3e4\u3c/sub\u3e spinel surface with Auger and X-ray photoelectron spectroscopy
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Analysis of the NiCo\u3csub\u3e2\u3c/sub\u3eO\u3csub\u3e4\u3c/sub\u3e spinel surface with Auger and X-ray photoelectron spectroscopy

机译:使用俄歇和X射线光电子能谱分析NiCo \ u3csub \ u3e2 \ u3c / sub \ u3eO \ u3cub \ u3e4 \ u3c / sub \ u3e尖晶石表面

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摘要

Nickel cobaltite, NiCo2O4, has been synthesized by sol–gel and thermal decomposition techniques and the surface composition studied with Auger (AES) and X-ray photoelectron spectroscopies (XPS). The asintroduced samples are near-stoichiometric, although samples fabricated by thermal decomposition tend to be oxygen-defi cient by approximately 25% of the predicted spinel concentration. Nickel 2p XPS indicates the predominant form of the metal to be Ni2+, with the cations located in octahedral sites. The cobalt cations are equally divided between tetrahedral and octahedral sites as Co3+. The oxygen XP 1s spectrum is composed of two peaks, the main lattice peak at 529.6 eV and a component at 531.2 eV with about 40% of the total O 1s intensity in stoichiometric samples. While the possibility of hydroxyl contaminants cannot be discounted, most of the intensity in the 531.2 eV peak is believed to be intrinsic to the NiCo2O4 surface. Heating the cobaltite in ultrahigh vacuum (UHV) results in surface reduction, with the largest changes apparent in the Co 2p XP spectrum, which shows clear signs of reduction to octahedral Co2+. Changes brought about by the reduction are not reversible, and although it is possible to reoxidize the material, the surface undergoes phase separation to Co3O4 and NixCo1-xO.
机译:镍钴矿NiCo2O4是通过溶胶-凝胶法和热分解技术合成的,其表面成分是通过俄歇(AES)和X射线光电子能谱(XPS)研究的。引入的样品几乎是化学计量的,尽管通过热分解制备的样品倾向于缺氧达预计的尖晶石浓度的25%。镍2p XPS表示金属的主要形式为Ni2 +,阳离子位于八面体位置。钴阳离子在四面体和八面体位点之间均分,为Co3 +。氧XP 1s谱图由两个峰组成,一个主晶格峰在529.6 eV,另一个在531.2 eV,化学计量样品中的总O 1s强度约为40%。尽管无法消除羟基污染物的可能性,但认为531.2 eV峰中的大多数强度是NiCo2O4表面固有的。在超高真空(UHV)中加热钴矿会导致表面还原,在Co 2p XP光谱中变化最大,这清楚地显示出还原为八面体Co2 +的迹象。还原带来的变化是不可逆的,尽管可以重新氧化该材料,但表面仍会发生相分离,形成Co3O4和NixCo1-xO。

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