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Estimation of {\pi}-{\pi} Electronic Couplings from Current Measurements

Authors :
Trasobaresa, J.
Rech, J.
Jonckheere, T.
Martin, T.
Aleveque, O.
Levillain, E.
Diez-Cabanes, V.
Olivier, Y.
Cornil, J.
Nys, J. P.
Sivakumarasamy, R.
Smaali, K.
Leclere, P.
Fujiwara, A.
Théron, D.
Vuillaume, D.
Clément, N.
Source :
Nano Lett. 17, 3215-3224 (2017)
Publication Year :
2017

Abstract

The {\pi}-{\pi} interactions between organic molecules are among the most important parameters for optimizing the transport and optical properties of organic transistors, light-emitting diodes, and (bio-) molecular devices. Despite substantial theoretical progress, direct experimental measurement of the {\pi}-{\pi} electronic coupling energy parameter t has remained an old challenge due to molecular structural variability and the large number of parameters that affect the charge transport. Here, we propose a study of {\pi}-{\pi} interactions from electrochemical and current measurements on a large array of ferrocene-thiolated gold nanocrystals. We confirm the theoretical prediction that t can be assessed from a statistical analysis of current histograms. The extracted value of t ca. 35 meV is in the expected range based on our density functional theory analysis. Furthermore, the t distribution is not necessarily Gaussian and could be used as an ultrasensitive technique to assess intermolecular distance fluctuation at the subangstr\"om level. The present work establishes a direct bridge between quantum chemistry, electrochemistry, organic electronics, and mesoscopic physics, all of which were used to discuss results and perspectives in a quantitative manner.<br />Comment: Nano Lett (2017), full text and supporting information

Details

Database :
arXiv
Journal :
Nano Lett. 17, 3215-3224 (2017)
Publication Type :
Report
Accession number :
edsarx.1704.00365
Document Type :
Working Paper
Full Text :
https://doi.org/10.1021/acs.nanolett.7b00804