Highly efficient unbridged D-A+(D) chromophores based on the quinolizinium cation for nonlinear optical (NLO) applications.
Fecha
2022-04-14
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Elsevier
Resumen
Novel charged D-A+ chromophores based on quinolizinium cations as acceptor unit have been prepared by
treating haloquinolizinium salts with N-heteroarylstannanes under Stille reaction conditions. This approach
provides an easy access to potential one-dimensional D-A+ and two-dimensional D-A+-D chromophores in which
the acceptor moiety (A+) is the simple azonia cation and the donors are different π-rich N-heterocycles. The first
hyperpolarizabilities (β) were measured by hyper-Rayleigh scattering experiments and the experimental data
confirmed that the inherent polarization between donor and acceptor fragments modulates the NLO properties.
The electronic structures and properties (including both the linear and nonlinear optical properties) of the
quinolizinium chromophores were examined by theoretical (DFT, HF and MP2) calculations. A promising
strategy for the rational design of D-A building blocks to create new organic-based NLO materials is proposed.
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Citación
Sánchez-Pavón, E., Recio, J., Ramirez, M. A., Batanero, B., Clays, K., Mendicuti, F., Marcelo, G., Carmona, T., Castaño, O., Angelova, S., Andres, J. L., Vaquero, J. J., & Cuadro, A. M. (2022). Highly efficient unbridged D-A+(D) chromophores based on the quinolizinium cation for nonlinear optical (NLO) applications. Dyes and Pigments, 205, 110323. 10.1016/j.dyepig.2022.110323
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