Computational and Spectroscopic Studies of Re(I) Bipyridyl Complexes Containing 2,6-Dimethylphenylisocyanide (CNx) Ligand
- 5 November 2004
- journal article
- Published by American Chemical Society (ACS) in Journal of Chemical Theory and Computation
- Vol. 1 (1) , 95-106
- https://doi.org/10.1021/ct049956g
Abstract
Density Functional Theory (DFT) calculations produce optimized geometries of the complexes [Re(CO)3(bpy)Cl] (1), [Re(CO)3(bpy)(py)](CF3SO3) (2), [Re(CO)3(bpy)(CNx)](CF3SO3) (3), and [Re(CO)(bpy)(CNx)3](CF3SO3) (4), where bpy = 2,2‘-bipyridine, py = pyridine, and CNx = 2,6-dimethylphenylisocyanide in their ground and lowest-lying triplet states. The ground-state optimized geometry for the cation of [Re(CO)3(bpy)(CNx)](CF3SO3) (3) results in a Re−C (CNx) bond length of 2.10 Å, a Re−C (CO) bond length trans to CNx of 2.01 Å, and a Re−C (CO) bond length cis to CNx of 1.96 Å which compares favorably to the single-crystal analysis of a Re−C (CNx) bond length of 2.074(4) Å, a Re−C (CO) bond length trans to CNx of 1.971(4) Å, and Re−C (CO) bond length cis to CNx of 1.932(4) Å. The majority of the singlet excited-state energies calculated using Time-dependent Density Functional Theory (TDDFT) and Conductor-like Polarizable Continuum Model (CPCM) are metal-ligand-to-ligand charge transfer (MLLCT) states and are in good agreement with the UV−vis spectral energies for the complexes in ethanol. The complexes exhibit emission both at room temperature and at 77 K except 4 which is only emissive at 77 K. The 77 K emission lifetimes range from 3.9 μs for 1 to 8.8 μs for 3. The emissive lowest-lying triplet state is a 3MLLCT state for complexes 1−3 but a triplet ligand-to-metal charge transfer (3LMCT) state for complex 4. The electronic, electrochemical, thermodynamic, HOMO−LUMO, and emitting-state energy gaps as well as the emission lifetimes increase in the order 1 < 2 < 3. A 3d−d excited- state, which is located above the 3LMCT state, accounts for the loss of room-temperature emission for complex 4.Keywords
This publication has 23 references indexed in Scilit:
- Synthesis, Characterization, and Photochemical and Computational Investigations of Ru(II) Heterocyclic Complexes Containing 2,6-dimethylphenylisocyanide (CNx) LigandInorganic Chemistry, 2004
- Time-Dependent Density Functional Theory Study of the Spectroscopic Properties Related to Aggregation in the Platinum(II) Biphenyl Dicarbonyl ComplexInorganic Chemistry, 2003
- An efficient implementation of time-dependent density-functional theory for the calculation of excitation energies of large moleculesThe Journal of Chemical Physics, 1998
- Excited-state acid-base chemistry of (.alpha.-diimine)cyanotricarbonylrhenium(I) complexesInorganic Chemistry, 1991
- Synthesis and characterization of a new family of luminescent cis-(4,4'-X2-5,5'-Y2-2,2'-bipyridine)2Os(CO)Cl(PF6) complexes (X = NEt2, OMe, Me, H, Cl, Y = H; X = H, Y = Me; X = Y = Me): control of excited-state properties by bipyridyl substituentsInorganic Chemistry, 1990
- Energy-adjustedab initio pseudopotentials for the second and third row transition elementsTheoretical Chemistry Accounts, 1990
- Luminescence properties of organometallic complexesChemical Reviews, 1987
- Ground and excited state electron transfer processes involving fac-tricarbonylchloro(1,10-phenanthroline)rhenium(I). Electrogenerated chemiluminescence and electron transfer quenching of the lowest excited stateJournal of the American Chemical Society, 1978
- Simultaneous multiple emissions from fac-XRe(CO)3(3-benzoylpyridine)2:n-.pi.* intraligand and charge-transfer emission at low temperatureJournal of the American Chemical Society, 1978
- Compounds containing platinum–carbon bonds. Part II. Crystal and molecular structure of cis-dichlorobis(phenyl isocyanide)platinum(II), cis-[PtCl2(CNPh)2]J. Chem. Soc., Dalton Trans., 1972