Tailoring the first hyperpolarizability of acetamide-chalcone derivatives
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We employed the femtosecond laser-induced Hyper-Rayleigh Scattering technique to measure the dispersion of
the first-order molecular hyperpolarizability (β) of five acetamide-chalcone derivatives containing different
electron-donating groups. Our results show that β strongly depends on the excitation wavelength, exhibiting an
approximately sevenfold increase at 750 nm compared to the static value, β∘. We demonstrated that this effect is
the result of two-photon resonance enhancement. We also observed that the β dispersion increases with the
electron-donating strength of the substituents, reflecting the intensification of intramolecular charge transfer
(ICT) along the π-conjugated system. Both β and the two-photon absorption (2 PA) cross-section show a linear
increase with the Hammett constant, reinforcing the central role of ICT in the nonlinear optical response.
Furthermore, we employed a phenomenological n-level model (nLM) to fit the experimental β dispersion and
compared it with the well-known Sum-Over-States model for 2 PA. Both models showed good agreement,
resulting in similar photophysical parameters, demonstrating the consistency of the adopted treatment. Thus, this
work elucidates an efficient mechanism for optimizing β in acetamide-chalcone derivatives, combining appropriate molecular functionalization with the selection of the excitation spectral region.
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PELOSI, André G. et al. Tailoring the first hyperpolarizability of acetamide-chalcone derivatives. Optical Materials, Amsterdam, v. 174, e117921, 2026. DOI: 10.1016/j.optmat.2026.117921. Disponível em: https://www.sciencedirect.com/science/article/pii/S0925346726000807. Acesso em: 8 set. 2026.