Mapping the electrostatic force field of single molecules from high-resolution scanning probe images

Publication date

2016-05-27

Authors

Hapala, Prokop
Svec, Martin
Stetsovych, Oleksandr
van der Heijden, N.J.ISNI 0000000419569213
Ondracek, Martin
van der Lit, J.ISNI 0000000419520778
Mutombo, Pingo
Swart, IngmarORCID 0000-0003-3201-7301ISNI 0000000390199991
Jelinek, Pavel

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Document Type

Article
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Abstract

How electronic charge is distributed over a molecule determines to a large extent its chemical properties. Here, we demonstrate how the electrostatic force field, originating from the inhomogeneous charge distribution in a molecule, can be measured with submolecular resolution. We exploit the fact that distortions typically observed in high-resolution atomic force microscopy images are for a significant part caused by the electrostatic force acting between charges of the tip and the molecule of interest. By finding a geometrical transformation between two high-resolution AFM images acquired with two different tips, the electrostatic force field or potential over individual molecules and self-assemblies thereof can be reconstructed with submolecular resolution.

Keywords

Applied physics, Organic chemistry, Physical chemistry, Scanning probe microscopy

Citation

Hapala, P, Svec, M, Stetsovych, O, van der Heijden, N J, Ondracek, M, van der Lit, J, Mutombo, P, Swart, I & Jelinek, P 2016, 'Mapping the electrostatic force field of single molecules from high-resolution scanning probe images', Nature Communications, vol. 7, 11560. https://doi.org/10.1038/ncomms11560