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Electron affinity of the diamond (100) surface changed by adsorption of C60

机译:金刚石(100)表面的电子亲和力因C60的吸附而改变

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We investigate the electron affinity change of the hydrogen-terminated diamond (100) surface with adsorption of C{sub}60 by means of ultraviolet photoelectron spectroscopy. X-ray photoelectron spectroscopy permits one to distinguish between thetwo materials of the same element and shows that there is no chemical bonding between the C{sub}60 molecules and the diamond substrate. The diamond (100)~(2×1):H surface presents a true negative electron affinity (NEA) of 1.1 eV and a high intensity NEA peak with a full width of half maximum of 250 meV. After successive evaporation of C{sub}60 the NEA values as well as the NEA peak decrease.
机译:我们通过紫外光电子能谱研究了C {sub} 60吸附氢封端金刚石(100)表面的电子亲和力变化。 X射线光电子能谱使人们能够区分相同元素的两种材料,并且表明C {sub} 60分子与金刚石基底之间没有化学键合。金刚石(100)〜(2×1):H表面呈现1.1 eV的真实负电子亲和力(NEA)和高强度NEA峰,半峰全宽为250 meV。在连续蒸发C {sub} 60之后,NEA值以及NEA峰均降低。

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