We use scanning tunneling microscopy to visualize and thermal desorption spectroscopy to quantitatively measure that the binding of naphthalene molecules to graphene (Gr), a case of pure van der Waals (vdW) interaction, strengthens with n- and weakens with p-doping of Gr. Density functional theory calculations that include the vdW interaction in a seamless, ab initio way accurately reproduce the observed trend in binding energies. Based on a model calculation, we propose that the vdW interaction is modified by changing the spatial extent of Gr's π orbitals via doping.
@article{arxiv.1509.02020,
title = {Tuning the van der Waals Interaction of Graphene with Molecules via Doping},
author = {Felix Huttmann and Antonio J. Martínez-Galera and Vasile Caciuc and Nicolae Atodiresei and Stefan Schumacher and Sebastian Standop and Ikutaro Hamada and Tim O. Wehling and Stefan Blügel and Thomas Michely},
journal= {arXiv preprint arXiv:1509.02020},
year = {2016}
}