Adsorption of organic molecules at the TiO2(110) surface: the effect of van der Waals interactions
Marcus Tillotson, Peter Brett, Roger A. Bennett, Ricardo Grau-Crespo

TL;DR
This study investigates how van der Waals interactions influence the adsorption of small organic molecules on TiO2(110) surfaces using DFT with the optB88-vdW functional, revealing that vdW forces affect adsorption distances and energies.
Contribution
It demonstrates the importance of including vdW interactions in DFT calculations for accurately modeling organic molecule adsorption on TiO2 surfaces.
Findings
vdW interactions lead to shorter adsorption distances
optB88-vdW predicts stronger adsorption energies than PBE
Dissociative adsorption is more favorable for certain molecules
Abstract
Understanding the interaction of organic molecules with TiO2 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) interactions. We examine here the contribution of vdW forces to the interaction of small organic molecules (methane, methanol, formic acid and glycine) with the TiO2 (110) surface, based on DFT calculations with the optB88-vdW functional. 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…
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