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Single-crystal adsorption calorimetry and density functional theory of CO chemisorption on fee Co{110}

机译:Co {110}对CO化学吸附的单晶吸附量热法和密度泛函理论

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Using single-crystal adsorption calorimetry (SCAC) and density functional theory (DFT), the interaction of carbon monoxide on fcc Co{110} is reported for the first time. The results indicate that adsorption is consistent with molecular chemisorption at all coverages. The initial heat of adsorption of 140 kJ mol~(-1) is found in the range of heat values calorimetrically measured on other ferromagnetic metal surfaces, such as nickel and iron. DFT adsorption energies are in good agreement with the experimental results, and comparison between SCAC and DFT for CO on other ferromagnetic surfaces is made. The calculated dissociation barrier of 2.03 eV implies that dissociation at 300 K is unlikely even at the lowest coverage. At high coverages during the adsorption-desorption steady state regime, a pre-exponential factor for CO desorption of 1.2 × 10~(17) s~(-1) is found, implying a localised molecular adsorbed state prior to desorption in contrast to what we found with Ni surfaces. This result highlights the importance of the choice of the pre-exponential factor in evaluating the activation energy for desorption.
机译:使用单晶吸附量热法(SCAC)和密度泛函理论(DFT),首次报道了一氧化碳与fcc Co {110}的相互作用。结果表明,在所有覆盖率下吸附均与分子化学吸附一致。在其他铁磁金属表面(如镍和铁)上量热测定的热值范围内发现了140 kJ mol〜(-1)的初始吸附热。 DFT的吸附能与实验结果吻合良好,并且比较了SCAC和DFT对其他铁磁表面上的CO的吸附作用。计算得出的解离势垒为2.03 eV,这意味着即使在最低覆盖率下,也不可能在300 K下发生解离。在吸附-解吸稳态过程中的高覆盖率下,发现CO脱附的指数前因数为1.2×10〜(17)s〜(-1),这意味着与解吸相比,解吸之前的局部分子吸附态我们发现镍表面。该结果突出了在评估解吸活化能时选择指数前因子的重要性。

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