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Adsorption of organic molecules at the TiO_2(110) surface: The effect of van der Waals interactions

机译:TiO_2(110)表面上有机分子的吸附:范德华相互作用的影响

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摘要

Understanding the interaction of organic molecules with TiO_2 surfaces is important for a wide range of technological applications. While density functional theory (DFT) calculations can provide valuable insight about these interactions, traditional DFT approaches with local exchange-correlation functionals suffer from a poor description of non-bonding van der Waals (vdW) forces. We examine here the vdW contribution to the interaction of small organic molecules (methane, methanol, formic acid and glycine) with the TiO_2(110) surface, based on DFT calculations with the optB88-vdW functional, which incorporate non-local correlation. The adsorption geometries and energies at different configurations were also obtained in the standard generalized gradient approximation (GGA-PBE) for comparison. We find that the optB88-vdW consistently gives shorter surface adsorbate-to-surface distances and slightly stronger interactions than PBE for the weak (physisorbed) modes of adsorption. In the case of strongly adsorbed (chemisorbed) molecules both functionals give similar results for the adsorption geometries, and also similar values of the relative energies between different chemisorption modes for each molecule. In particular both functionals predict that dissociative adsorption is more favorable than molecular adsorption for methanol, formic acid and glycine, in general agreement with experiment The dissociation energies obtained from both functionals are also very similar, indicating that vdW interactions do not affect the thermodynamics of surface deprotonation. However, the optB88-vdW always predicts stronger adsorption than PBE. The comparison of the methanol adsorption energies with values obtained from a Redhead analysis of temperature programmed desorption data suggests that optB88-vdW significantly overestimates the adsorption strength, although we warn about the uncertainties involved in such comparisons.
机译:理解有机分子与TiO_2表面的相互作用对于广泛的技术应用非常重要。尽管密度泛函理论(DFT)计算可以提供有关这些相互作用的有价值的见解,但具有局部交换相关函数的传统DFT方法对非键合范德华力(vdW)的描述不佳。我们在这里基于optB88-vdW功能的DFT计算,并结合非局部相关性,研究了vdW对小的有机分子(甲烷,甲醇,甲酸和甘氨酸)与TiO_2(110)表面相互作用的贡献。还可以通过标准的通用梯度近似(GGA-PBE)获得不同构型的吸附几何形状和能量,以进行比较。我们发现,对于弱(物理吸附)吸附模式,optB88-vdW始终比PBE产生更短的表面吸附物到表面的距离,以及更强的相互作用。在强吸附(化学吸附)分子的情况下,两种官能团对于吸附几何形状给出相似的结果,并且对于每个分子,在不同化学吸附模式之间的相对能量的值也相似。总体而言,与实验一致,尤其是两种官能团均预测离解吸附比分子吸附更有利于甲醇,甲酸和甘氨酸的吸附。从两种官能团获得的离解能也非常相似,表明vdW相互作用不会影响表面的热力学。去质子化。但是,optB88-vdW始终预测比PBE具有更强的吸附能力。甲醇吸附能与通过程序升温脱附数据的Redhead分析获得的值的比较表明,尽管我们警告此类比较涉及不确定性,但optB88-vdW大大高估了吸附强度。

著录项

  • 来源
    《Surface Science》 |2015年第2期|142-153|共12页
  • 作者单位

    Department of Chemistry, University College London, London, WC1H 0AJ, United Kingdom, Biomaterials and Tissue Engineering, UCL Eastman Dental Institute, 256 Cray's Inn Road, London, WC1X 8LD, United Kingdom;

    Biomaterials and Tissue Engineering, UCL Eastman Dental Institute, 256 Cray's Inn Road, London, WC1X 8LD, United Kingdom;

    Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, United Kingdom;

    Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dispersion; van der Waals; Adsorption; TiO_2(110); Density functional theory; Small organic molecules;

    机译:分散;范德华斯吸附;TiO_2(110);密度泛函理论;有机小分子;

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