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A strong steric hindrance effect on ground state, excited state, and charge separated state properties of a CuI-diimine complex captured by X-ray transient absorption spectroscopy
- Source :
- Huang, J, Mara, M W, Stickrath, A B, Kokhan, O, Harpham, M R, Haldrup, K, Shelby, M L, Zhang, X, Ruppert, R, Sauvage, J-P & Chen, L X 2014, ' A strong steric hindrance effect on ground state, excited state, and charge separated state properties of a CuI-diimine complex captured by X-ray transient absorption spectroscopy ', Dalton Transactions, vol. 43, no. 47, pp. 17615-17623 . https://doi.org/10.1039/c4dt02046d
- Publication Year :
- 2014
- Publisher :
- Royal Society of Chemistry (RSC), 2014.
-
Abstract
- Photophysical and structural properties of a Cu(I) diimine complex with very strong steric hindrance, [Cu(I)(dppS)2](+) (dppS = 2,9-diphenyl-1,10-phenanthroline disulfonic acid disodium salt), are investigated by optical and X-ray transient absorption (OTA and XTA) spectroscopy. The bulky phenylsulfonic acid groups at 2,9 positions of phenanthroline ligands force the ground state and the metal-to-ligand charge-transfer (MLCT) excited state to adopt a flattened pseudo-tetrahedral coordination geometry in which the solvent access to the copper center is completely blocked. We analyzed the MLCT state dynamics and structures as well as those of the charge separated state resulting from the interfacial electron injection from the MLCT state to TiO2 nanoparticles (NPs). The OTA results show the absence of the sub-picosecond component previously assigned as the time constant for flattening, while the two observed time constants are assigned to a relatively slow intersystem crossing (ISC) rate (∼13.8 ps) and a decay rate (100 ns) of the [Cu(I)(dppS)2](+) MLCT state in water. These results correlate well with the XTA studies that resolved a flattened tetrahedral Cu(i) coordination geometry in the ground state. Probing the (3)MLCT state structure with XTA establishes that the (3)MLCT state has the same oxidation state as the copper center in [Cu(II)(dppS)2](2+) and the Cu-N distance is reduced by 0.06 Å compared to that of the ground state, accompanied by a rotation of phenyl rings located at 2,9 positions of phenanthroline. The structural dynamics of the photoinduced charge transfer process in the [Cu(I)(dppS)2](+)/TiO2 hybrid is also investigated, which suggests a more restricted environment for the complex upon binding to TiO2 NPs. Moreover, the Cu-N bond length of the oxidized state of [Cu(I)(dppS)2](+) after electron injection to TiO2 NPs shortens by 0.05 Å compared to that in the ground state. The interpretation of these observed structural changes associated with excited and charge separated states will be discussed. These results not only set an example for applying XTA in capturing the intermediate structure of metal complex/semiconductor NP hybrids but also provide guidance for designing efficient Cu(I) diimine complexes with optimized structures for application in solar-to-electricity conversion.
- Subjects :
- Absorption spectroscopy
Ground state
Phenanthroline
Rate constants
Metal to ligand charge transfers
Ligands
Photochemistry
Inorganic Chemistry
chemistry.chemical_compound
Charge transfer
Oxidation state
Chemical reactions
Electron injection
Photoinduced charge transfer
Diimine
Intermediate structures
Coordination geometry
Chemistry
Copper compounds
Excited states
Tetrahedral coordination geometry
Bond length
Charge-separated state
Crystallography
Intersystem crossing
Decay (organic)
Excited state
Steric hindrance effects
Structural dynamics
Titanium dioxide
Optimized structures
Copper
Subjects
Details
- ISSN :
- 14779234 and 14779226
- Volume :
- 43
- Database :
- OpenAIRE
- Journal :
- Dalton Trans.
- Accession number :
- edsair.doi.dedup.....c6f12b45d24f569d1c0368895acd9a10
- Full Text :
- https://doi.org/10.1039/c4dt02046d