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| DOI | 10.1016/J.POLY.2017.08.018 | ||||
| Año | 2017 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
The reaction of [P,N-{(C6H5)(2)(C5H4N)P}Re(CO)(3)Br] (RePNBr) with silver triflate leads to the complex [P,N-{(C6H5)(2)(C5H4N)P}Re(CO)(3)(O-CF3SO3)] (RePNTfO) with moderate yield. This new P,N-Re-I triflate compound contains the anion directly coordinated to the metal, completing an octahedral environment. RePNTfO displays in dichloromethane (DCM) solution an irreversible oxidation about +1.35 V and three irreversible reduction processes at -1.38 V, -2.03 V and -2.30 V. Oxidation has been attributed to the Re-I/Re-II couple, while the reduction corresponds to PN-ligand processes, which is consistent with those computed by means of DFT. The absorption spectrum of RePNTfO in DCM displays a maximum at 295 nm (epsilon= 7.1 x 10(3) M-1 cm(-1)) and a shoulder around 350 nm (epsilon = 1.8 x 10(3) M-1 cm(-1)), which have been assigned to intraligand (pi -> pi*) and metal to ligand charge transfer (MLCT, d pi -> pi*) transitions with the help of DFT/TDDFT. Excitation of RePNTfO in DCM at 350 nm leads to an emission spectrum centered at 535 nm. The analysis of the variation of the absorption and emission spectra in coordinating solvents compared to non-coordinating DCM, DFT/TDDFT calculations modeling and ELF analysis suggests for coordinating solvents that triflate ligand is replaced in the coordination sphere of Re-I in solution. Kinetics of the exchange of triflate by bromide measured in DCM at different temperatures allowed to estimate the Eyring parameters: Delta H-not equal, Delta S-not equal and Delta G(not equal), 50.8 kJ mol(-1), -109.6 J K-1 mol(-1) and 83.5 kJ mol(-1) respectively. The high negative entropy is indicative of a compact transition state, compatible with an associative mechanism, la, for the exchange. (C) 2017 Elsevier Ltd. All rights reserved.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Prado, Gaspar | Hombre |
Universidad Nacional Andrés Bello - Chile
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| 2 | Belen Ibanez, Maria | Mujer |
Universidad Nacional Andrés Bello - Chile
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| 2 | Ibañez, María Belén | Mujer |
Universidad Nacional Andrés Bello - Chile
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| 3 | Acosta, Alison | Mujer |
Universidad Nacional Andrés Bello - Chile
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| 4 | CHAMORRO-JIMENEZ, EDUARDO ENRIQUE | Hombre |
Universidad Nacional Andrés Bello - Chile
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| 5 | Hermosilla-Ibanez, Patricio | Hombre |
Universidad de Santiago de Chile - Chile
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| 6 | GUNTHER-HUERTA, GERMAN ENRIQUE | Hombre |
Universidad de Chile - Chile
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| 7 | PIZARRO-URZUA, NANCY ALEJANDRA | Mujer |
Universidad Nacional Andrés Bello - Chile
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| 8 | VEGA-CARVALLO, ANDRES IGOR | Hombre |
Universidad Nacional Andrés Bello - Chile
Centro para el Desarrollo de la Nanociencia y la Nanotecnologia - Chile |
| Fuente |
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| Fondo Nacional de Desarrollo Científico y Tecnológico |
| Universidad Andrés Bello |
| Comisión Nacional de Investigación CientÃfica y Tecnológica |
| Fondo Nacional de Desarrollo CientÃfico y Tecnológico |
| Universidad Andrés Bello |
| Comision Nacional Cientifica y Tecnologica |
| Agradecimiento |
|---|
| The authors gratefully acknowledge partial financial support of Comision Nacional Cientifica y Tecnologica, grants FONDECYT 1160546, 1160749, ACT-1404 (IPMaG) and UNAB DI-1253-16/R. AV is a member of Financiamiento Basal para Centros Cientificos y Tecnologicos de Excelencia FB0807. |
| The authors gratefully acknowledge partial financial support of Comisión Nacional Científica y Tecnológica , grants FONDECYT 1160546, 1160749, ACT-1404 (IPMaG) and UNAB DI-1253-16/R. AV is a member of Financiamiento Basal para Centros Científicos y Tecnológicos de Excelencia FB0807. |