Evolution of Linear Absorption and Nonlinear Optical Properties in V-Shaped Ruthenium(II)-Based Chromophores
Abstract
In this article, we describe a series of complexes with electron-rich cis-{Ru^(II)(NH_3)_4}^(2+) centers coordinated to two pyridyl ligands bearing N-methyl/arylpyridinium electron-acceptor groups. These V-shaped dipolar species are new, extended members of a class of chromophores first reported by us (Coe, B. J. et al. J. Am. Chem. Soc. 2005, 127, 4845−4859). They have been isolated as their PF_6− salts and characterized by using various techniques including ^1H NMR and electronic absorption spectroscopies and cyclic voltammetry. Reversible Ru^(III/II) waves show that the new complexes are potentially redox-switchable chromophores. Single crystal X-ray structures have been obtained for four complex salts; three of these crystallize noncentrosymmetrically, but with the individual molecular dipoles aligned largely antiparallel. Very large molecular first hyperpolarizabilities β have been determined by using hyper-Rayleigh scattering (HRS) with an 800 nm laser and also via Stark (electroabsorption) spectroscopic studies on the intense, visible d → π^* metal-to-ligand charge-transfer (MLCT) and π → π^* intraligand charge-transfer (ILCT) bands. The latter measurements afford total nonresonant β_0 responses as high as ca. 600 × 10^(−30) esu. These pseudo-C_(2v) chromophores show two substantial components of the β tensor, β_(zzz) and β_(zyy), although the relative significance of these varies with the physical method applied. According to HRS, β_(zzz) dominates in all cases, whereas the Stark analyses indicate that β_(zyy) is dominant in the shorter chromophores, but β_(zzz) and β_(zyy) are similar for the extended species. In contrast, finite field calculations predict that β_(zyy) is always the major component. Time-dependent density functional theory calculations predict increasing ILCT character for the nominally MLCT transitions and accompanying blue-shifts of the visible absorptions, as the ligand π-systems are extended. Such unusual behavior has also been observed with related 1D complexes (Coe, B. J. et al. J. Am. Chem. Soc. 2004, 126, 3880−3891).
Additional Information
© 2010 American Chemical Society. Received October 20, 2009. Publication Date (Web): January 15, 2010. We thank the EPSRC for support (grant EP/D070732/1) and also the Fund for Scientific Research-Flanders (FWO-V, G.0312.08), the University of Leuven (GOA/2006/3), MCyT-FEDER (CTQ2005-01368, CTQ2008-02942), the NSF (grant CHE-0802907, "Powering the Planet: an NSF Center for Chemical Innovation") and Gobierno de Aragon-Fondo Social Europeo (E39). We are grateful to Dr. Inge Asselberghs for technical assistance with the analysis of the HRS data.Attached Files
Supplemental Material - ja908667p_si_001.pdf
Supplemental Material - ja908667p_si_002.cif
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Additional details
- Eprint ID
- 17838
- DOI
- 10.1021/ja908667p
- Resolver ID
- CaltechAUTHORS:20100401-105537118
- Engineering and Physical Sciences Research Council (EPSRC)
- EP/D070732/1
- Fonds Wetenschappelijk Onderzoek - Vlaanderen (FWO)
- G.0312.08
- University of Leuven
- GOA/2006/3
- Ministerio de Ciencia y Tecnología (MCyT)
- CTQ2005-01368
- Ministerio de Ciencia y Tecnología (MCyT)
- CTQ2008-02942
- NSF
- CHE-0802907
- Gobierno de Aragon-Fondo Social Europeo
- E39
- Fondo Europeo de Desarrollo Regional (FEDER)
- Created
-
2010-04-06Created from EPrint's datestamp field
- Updated
-
2021-11-08Created from EPrint's last_modified field
- Caltech groups
- CCI Solar Fuels