Nonlinear optical chromophores with two ferrocenyl, octamethylferrocenyl, or 4-(diphenylamino)phenyl groups attached to rhenium(I) or zinc(II) centers

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Abstract

The compounds 4,4′-bis[(E)-2-R-vinyl]-2,2′-bipyridyl {R = ferrocenyl [(Fcv) 2 bpy], octamethylferrocenyl [(Me 8 Fcv) 2 bpy] or 4-(diphenylamino)phenyl [(Dapv) 2 bpy]} are used to prepare eight new complexes with Zn II Cl 2, Zn II (OAc) 2, or fac-Re I Cl(CO) 3 centers. The recently reported complex fac-Re I Cl(CO) 3 [(Dapv) 2 bpy] (Horvath, R. et al. Inorg. Chem. 2013, 52, 1304) is also studied. Electronic absorption spectra show intense d → π∗ metal-to-ligand charge-transfer (MLCT) and π → π∗ intraligand charge-transfer (ILCT) absorption bands, the relative energies of which correlate logically with the molecular structure. Cyclic voltammetry reveals a reversible oxidation wave for the Fc/Me 8 Fc complexes, accompanied by quasireversible or irreversible ligand-based reductions. The Re complexes also show irreversible Re II/I waves. Single-crystal X-ray structures are reported for (Me 8 Fcv) 2 bpy, Zn II Cl 2 [(Me 8 Fcv) 2 bpy], Zn II (OAc) 2 [(Fcv) 2 bpy]·CHCl 3, and fac-Re I Cl(CO) 3 [(Me 8 Fcv) 2 bpy]·0.5CHCl 3. Molecular first hyperpolarizabilities β are measured in DCM solutions via the hyper-Rayleigh scattering (HRS) technique at 1300 nm. Stark (electroabsorption) spectroscopic studies on only the MLCT bands in frozen butyronitrile allow the indirect estimation of lower limits for the overall static first hyperpolarizabilities β 0. Time-dependent density functional theory (TD-DFT) calculations on selected complexes confirm the expected assignments of their low energy absorption bands, with the best results obtained by using the M06 functional and Def2-TZVP/SVP/TZVPP mixed basis set. DFT predicts that the total static first hyperpolarizability β tot increases in the Zn II Cl 2 series in the order R = Fc < Me 8 Fc < Dap, consistent with the HRS and Stark data. The computed β values increase substantially on moving from the gas phase to a DCM or MeCN solvent medium, and the essentially 2D nature of the chromophores leads to dominant xxy tensor components.

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Coe, B. J., Foxon, S. P., Pilkington, R. A., Sánchez, S., Whittaker, D., Clays, K., … Brunschwig, B. S. (2015). Nonlinear optical chromophores with two ferrocenyl, octamethylferrocenyl, or 4-(diphenylamino)phenyl groups attached to rhenium(I) or zinc(II) centers. Organometallics, 34(9), 1701–1715. https://doi.org/10.1021/acs.organomet.5b00193

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