arXiv · 1511.08597
Design and synthesis of aromatic molecules for probing electric-fields at the nanoscale
Abstract
We propose using halogenated organic dyes as nanoprobes for electric field and show their greatly enhanced Stark coefficients using density functional theory (DFT) calculations. We analyse halogenated variants of three molecules that have been of interest for cryogenic single molecule spectroscopy, perylene, terrylene, and dibenzoterrylene, with the zero-phonon optical transitions at blue, red, and near infrared. Out of all the combinations of halides and binding sites that are calculated, we have found that fluorination of the optimum binding site induces a dipole difference between ground and excited states larger than 0.5 D for all three molecules with the highest value of 0.69 D for fluoroperylene. We also report on synthesis of 3-fluoroterrylene and bulk spectroscopy of this compound in liquid and solid organic environments.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sanli Faez, Nico R. Verhart, Marios Markoulides, Francesco Buda, André Gourdon, Michel Orrit. 2015-11-27. Design and synthesis of aromatic molecules for probing electric-fields at the nanoscale. https://doi.org/10.1039/c5fd00065c
Cite the original work for its findings. Save a collection to share your selection of sources.