Characteristic Contrast in Δfmin Maps of Organic Molecules Using Atomic Force Microscopy

Publication date

2016-09-27

Authors

van der Heijden, N.J.ISNI 0000000419569213
Hapala, Prokop
Rombouts, Jeroen A
van der Lit, J.ISNI 0000000419520778
Smith, Daniel T.ISNI 0000000493301477
Mutombo, Pingo
Švec, Martin
Jelinek, Pavel
Swart, IngmarORCID 0000-0003-3201-7301ISNI 0000000390199991

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Scanning tunneling microscopy and atomic force microscopy can provide detailed information about the geometric and electronic structure of molecules with submolecular spatial resolution. However, an essential capability to realize the full potential of these techniques for chemical applications is missing from the scanning probe toolbox: chemical recognition of organic molecules. Here, we show that maps of the minima of frequency shift-distance curves extracted from 3D data cubes contain characteristic contrast. A detailed theoretical analysis based on density functional theory and molecular mechanics shows that these features are characteristic for the investigated species. Structurally similar but chemically distinct molecules yield significantly different features. We find that the van der Waals and Pauli interaction, together with the specific adsorption geometry of a given molecule on the surface, accounts for the observed contrast.

Keywords

AFM, DFT, molecular mechanics, single molecule, CO tip, Xe tip, Taverne

Citation

van der Heijden, N J, Hapala, P, Rombouts, J A, van der Lit, J, Smith, D, Mutombo, P, Švec, M, Jelinek, P & Swart, I 2016, 'Characteristic Contrast in Δfmin Maps of Organic Molecules Using Atomic Force Microscopy', ACS Nano, vol. 10, no. 9, pp. 8517-8525. https://doi.org/10.1021/acsnano.6b03644