Second Harmonic Generation Signatures of Supramolecular Assemblies Based on Amide Moieties

Author:

Ramos Tárcius N.1ORCID,Le Bras Laura2ORCID,Dory Yves L.3ORCID,Champagne Benoît1ORCID

Affiliation:

1. Laboratory of Theoretical Chemistry Namur Institute of Structured Matter (NISM) University of Namur rue de Bruxelles, 61 5000 Namur Belgium

2. Laboratoire Chrono Environnement UMR 6249 CNRS Université de Franche-Comté 16 Route de Gray CEDEX 25030 Besançon France

3. Laboratoire de Synthèse Supramoléculaire Département de Chimie Institut de Pharmacologie Université de Sherbrooke 3001, 12e avenue nord J1H 5N4 Sherbrooke Québec Canada

Abstract

AbstractTargeting the use of the second harmonic generation (SHG) as a bioimaging technique to unravel the formation of aggregates, the SHG first hyperpolarizabilities ( ) of assemblies of benzene‐1,3,5‐tricarboxamide derivatives have been evaluated at the density functional theory level. Calculations have revealed that i) the assemblies exhibit SHG responses and the total first hyperpolarizability responses of the aggregates are evolving with their size. The largest aggregation effect is a 18‐times increase for of B4 when going from the monomer to the pentamer, that ii) the intrinsic SHG responses described by the hyper‐Rayleigh Scattering are enhanced in presence of iodine atoms on the phenyl core, that iii) the side chains affect the relative orientation of the dipole moment and first hyperpolarizability vectors, which impacts more the EFISHG quantities than their moduli, and that iv) the radial component to is dominant for the compounds having the largest responses. These results have been obtained using the sequential molecular dynamics then quantum mechanics approach to account for dynamic structural effects on the SHG responses.

Publisher

Wiley

Subject

Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics

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