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Published April 2, 1997 | Supplemental Material
Journal Article Open

Highly Dipolar, Optically Nonlinear Adducts of Tetracyano-p-quinodimethane:  Synthesis, Physical Characterization, and Theoretical Aspects

Abstract

A new series of nonlinear optical molecules are described where the ground state polarization is predominantly zwitterionic when the molecules are dissolved in solution. The molecules, which are derived in general from facile reactions between tertiary amines and tetracyano-p-quinodimethane (TCNQ), are of a type where the stabilization of the charge-separated ground state is favored by an increase in aromaticity over the neutral, quinoidal forms of the molecules. The measured second-order optical nonlinearity of one in the series has been measured by hyper-Rayleigh scattering and a figure of merit value, μβ(0), being the product of the dipole moment and static first hyperpolarizability, is found to be 9500 × 10^(-48) esu. This value, which is higher than most other reported values, is taken from studies in chlorinated solvents of relatively low polarity, but the discussion emphasizes the evolution of μβ(0) with solvent polarity, showing that even higher values could be expected with only modest increases in the polarity of the surrounding medium. The analysis of experimental data taken during dipole moment studies is thoroughly examined, and it is concluded that full account must be taken of the molecular shape to correlate the results with theoretical calculations. An ellipsoidal reaction field model is preferred for these highly one-dimensional molecules having strongly anisotropic polarizabilities.

Additional Information

© 1997 American Chemical Society. Received November 12, 1996. Publication Date (Web): April 2, 1997. We thank the U.K. E.P.S.R.C. for support for M.S., A.T., J.M.C., and P.R.T. J.M.C. also receives support from the Institut Laue-Langevin (Grenoble, France). This work was also supported by funds provided under the EU Human Capital and Mobility Programme, Research Network, "Novel third-order nonlinear optical molecular materials" [CHRX-CT93-0334 (DG XII)]. The work in Mons is part funded by the Belgian Federal Government, "Pôle d'Attraction Interuniversitaire en Chimie Supramoleculaire et Catalyse", FNRS/FRFC, and an IBM Joint Study. We acknowledge the assistance given in NMR studies by Dr. R. S. Matthews. IR spectra were carried out by Mr. Y. Kagawa. The work in Antwerp is part funded by the Flanders Government in its action for the promotion of participation in EU-research programmes and also by the Belgian Fund for Scientific Research (F.W.O.).

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