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范德华泛函在静态和动态系统中用于计算N₂在W(110)上的解离吸附的应用。

Application of van der Waals functionals to the calculation of dissociative adsorption of N2 on W(110) for static and dynamic systems.

作者信息

Migliorini Davide, Nattino Francesco, Kroes Geert-Jan

机构信息

Gorlaeus Laboratories, Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden,The Netherlands.

出版信息

J Chem Phys. 2016 Feb 28;144(8):084702. doi: 10.1063/1.4942198.

Abstract

The fundamental understanding of molecule-surface reactions is of great importance to heterogeneous catalysis, motivating many theoretical and experimental studies. Even though much attention has been dedicated to the dissociative chemisorption of N2 on tungsten surfaces, none of the existing theoretical models has been able to quantitatively reproduce experimental reaction probabilities for the sticking of N2 to W(110). In this work, the dissociative chemisorption of N2 on W(110) has been studied with both static electronic structure and ab initio molecular dynamics (AIMD) calculations including the surface temperature effects through surface atom motion. Calculations have been performed using density functional theory, testing functionals that account for the long range van der Waals (vdW) interactions, which were previously only considered in dynamical calculations within the static surface approximation. The vdW-DF2 functional improves the description of the potential energy surface for N2 on W(110), returning less deep molecular adsorption wells and a better ratio between the barriers for the indirect dissociation and the desorption, as suggested by previous theoretical work and experimental evidence. Using the vdW-DF2 functional less trapping-mediated dissociation is obtained compared to results obtained with standard semi-local functionals such as PBE and RPBE, improving agreement with experimental data at E(i) = 0.9 eV. However, at E(i) = 2.287 and off-normal incidence, the vdW-DF2 AIMD underestimates the experimental reaction probabilities, showing that also with the vdW-DF2 functional the N2 on W(110) interaction is not yet described with quantitative accuracy.

摘要

对分子-表面反应的基本理解对多相催化至关重要,激发了许多理论和实验研究。尽管人们对N₂在钨表面的解离化学吸附给予了很多关注,但现有的理论模型都无法定量再现N₂吸附到W(110)上的实验反应概率。在这项工作中,通过静态电子结构和从头算分子动力学(AIMD)计算研究了N₂在W(110)上的解离化学吸附,其中包括通过表面原子运动考虑表面温度效应。使用密度泛函理论进行了计算,测试了考虑长程范德华(vdW)相互作用的泛函,这些相互作用以前仅在静态表面近似下的动力学计算中被考虑。vdW-DF2泛函改进了W(110)上N₂势能面的描述,如先前理论工作和实验证据所表明的那样,返回的分子吸附阱较浅,间接解离和脱附的势垒之间的比例更好。与使用标准半局域泛函(如PBE和RPBE)获得的结果相比,使用vdW-DF2泛函获得的捕获介导解离较少,在E(i)=0.9 eV时与实验数据的一致性得到改善。然而,在E(i)=2.287和非垂直入射时,vdW-DF2 AIMD低估了实验反应概率,表明即使使用vdW-DF2泛函,W(110)上N₂的相互作用仍未得到定量准确的描述。

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