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Transfer of electrons on scratched iron surfaces: Photoelectron emission and X-ray photoelectron spectroscopy studies

机译:铁在划痕的铁表面上的转移:光电子发射和X射线光电子能谱研究

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Abstract We report the activation energy, Δ E ~(a), for the quantum yield in thermally assisted photoelectron emission (TAPE) under 210-nm-wavelength light irradiation, and the associated X-ray photoelectron spectroscopy (XPS) results. Samples were cleaned only in acetone and scratched in air, water, methanol, ethanol, acetone, benzene, and cyclohexane. Glow curves, describing the temperature dependence of photoelectron emission (PE) quantum yield (emitted electrons/photon), Y , were obtained. A simple method of determining Δ E ~(a)using Y , called Y ~( GC ), at seven temperatures up to 353 °C, for the same Y glow curve, was proposed. The Δ E ~(a)obtained using this method was almost the same as that obtained from Y for seven stationary temperatures ( Y ~( ST )). For scratched samples, the TAPE was measured over two cycles of temperature increase and subsequent decrease (Up1, Down1 and Up2, Down2 scans) in the 25–339 °C range, and Δ E ~(a)was obtained from Y ~( GC ). The Arrhenius plot was approximated by a straight line, although a convex swelling peak appeared in the Up1 scan. Δ E ~(aUp1)was in the 0.212–0.035 eV range, depending on the environment in which scratching was performed; Δ E ~(aUp1)for water was much higher than that for acetone. This was explained in terms of the mode of the acid–base interaction between the liquid molecules and the hydroxyl group of Fe–OH. The values of Δ E ~(aDown1), Δ E ~(aUp1), and Δ E ~(aDown2)were in the 0.038–0.012 eV range. The total count of electrons emitted during the Up1 and Up2 scans was found to decrease with increasing Δ E ~(aDown1)and Δ E ~(aDown2), respectively. Δ E ~(aUp2)was found to increase with increasing presence of the FeO component in the analyzed Fe oxides. The convex swelling peak was attributed to the removal of carbon materials from the scratched surface and the effect of the increased electron density of the surface hydroxyl group of FeOH under the light irradiation.
机译:摘要我们报道了在210 nm波长的光照射下热辅助光电子发射(TAPE)中的量子产率的活化能ΔE〜(a),以及相关的X射线光电子能谱(XPS)。仅在丙酮中清洁样品,并在空气,水,甲醇,乙醇,丙酮,苯和环己烷中刮擦。获得了辉光曲线,该辉光曲线描述了光电子发射(PE)量子产率(发射电子/光子)Y的温度依赖性。提出了一种简单的方法,在相同的Y发光曲线下,在高达353°C的七个温度下,使用Y来确定ΔE〜(a),称为Y〜(GC)。使用该方法获得的ΔE〜(a)与在七个固定温度(Y〜(ST))下从Y获得的ΔE〜(a)几乎相同。对于刮擦的样品,在25–339°C范围内的两个温度升高和随后降低(Up1,Down1和Up2,Down2扫描)周期内测量TAPE,并从Y〜(GC)获得ΔE〜(a)。 )。尽管在Up1扫描中出现了凸肿胀峰,但Arrhenius曲线近似为一条直线。 ΔE〜(aUp1)处于0.212–0.035 eV范围内,具体取决于执行刮擦的环境。水的ΔE〜(aUp1)远高于丙酮。这是根据液体分子与Fe-OH的羟基之间的酸碱相互作用方式来解释的。 ΔE〜(aDown1),ΔE〜(aUp1)和ΔE〜(aDown2)的值在0.038–0.012 eV范围内。发现在Up1和Up2扫描期间发射的电子总数分别随着ΔE〜(aDown1)和ΔE〜(aDown2)的增加而减少。发现随着分析的Fe氧化物中FeO组分的存在增加,ΔE〜(aUp2)会增加。凸起的溶胀峰归因于在刮擦表面上碳材料的去除以及在光照射下FeOH表面羟基基团电子密度增加的影响。

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