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Nitrous oxide as an effective AFM tip functionalization: a comparative study.


ABSTRACT: We investigate the possibility of functionalizing Au tips by N2O molecules deposited on a Au(111) surface and their further use for imaging with submolecular resolution. First, we characterize the adsorption of the N2O species on Au(111) by means of atomic force microscopy with CO-functionalized tips and density functional theory (DFT) simulations. Subsequently we devise a method of attaching a single N2O to a metal tip apex and benchmark its high-resolution imaging and spectroscopic capabilities using FePc molecules. Our results demonstrate the feasibility of high-resolution imaging. However, we find an inherent asymmetry of the N2O probe-particle adsorption on the tip apex, in contrast to a CO tip reference. These findings are consistent with DFT calculations of the N2O- and CO tip apexes.

SUBMITTER: Chutora T 

PROVIDER: S-EPMC6369984 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Nitrous oxide as an effective AFM tip functionalization: a comparative study.

Chutora Taras T   de la Torre Bruno B   Mutombo Pingo P   Hellerstedt Jack J   Kopeček Jaromír J   Jelínek Pavel P   Švec Martin M  

Beilstein journal of nanotechnology 20190130


We investigate the possibility of functionalizing Au tips by N<sub>2</sub>O molecules deposited on a Au(111) surface and their further use for imaging with submolecular resolution. First, we characterize the adsorption of the N<sub>2</sub>O species on Au(111) by means of atomic force microscopy with CO-functionalized tips and density functional theory (DFT) simulations. Subsequently we devise a method of attaching a single N<sub>2</sub>O to a metal tip apex and benchmark its high-resolution imag  ...[more]

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