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Dive into the research topics where Aurora Rodríguez-Rodríguez is active.

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Featured researches published by Aurora Rodríguez-Rodríguez.


Inorganic Chemistry | 2012

Lanthanide(III) complexes with ligands derived from a cyclen framework containing pyridinecarboxylate pendants. The effect of steric hindrance on the hydration number.

Aurora Rodríguez-Rodríguez; David Esteban-Gómez; Andrés de Blas; Teresa Rodríguez-Blas; Marianna Fekete; Mauro Botta; Raphaël Tripier; Carlos Platas-Iglesias

Two new macrocyclic ligands, 6,6′-((1,4,7,10-tetraazacyclododecane-1,7-diyl)bis(methylene))dipicolinic acid (H2DODPA) and 6,6′-((4,10-dimethyl-1,4,7,10-tetraazacyclododecane-1,7-diyl)bis(methylene))dipicolinic acid (H2Me-DODPA), designed for complexation of lanthanide ions in aqueous solution, have been synthesized and studied. The X-ray crystal structure of [Yb(DODPA)](PF6)·H2O shows that the metal ion is directly bound to the eight donor atoms of the ligand, which results in a square-antiprismatic coordination around the metal ion. The hydration numbers (q) obtained from luminescence lifetime measurements in aqueous solution of the Eu(III) and Tb(III) complexes indicate that the DODPA complexes contain one inner-sphere water molecule, while those of the methylated analogue H2Me-DODPA are q = 0. The structure of the complexes in solution has been investigated by 1H and 13C NMR spectroscopy, as well as by theoretical calculations performed at the density functional theory (DFT; mPWB95) level. The minimum energy conformation calculated for the Yb(III) complex [Λ(λλλλ)] is in good agreement with the experimental structure in solution, as demonstrated by the analysis of the Yb(III)-induced paramagnetic 1H shifts. The nuclear magnetic relaxation dispersion (NMRD) profiles recorded for [Gd(Me-DODPA)]+ are typical of a complex with q = 0, where the observed relaxivity can be accounted for by the outer-sphere mechanism. However, [Gd(DODPA)]+ shows NMRD profiles consistent with the presence of both inner- and outer-sphere contributions to relaxivity. A simultaneous fitting of the NMRD profiles and variable temperature 17O NMR chemical shifts and transversal relaxation rates provided the parameters governing the relaxivity in [Gd(DODPA)]+. The results show that this system is endowed with a relatively fast water exchange rate k(ex)(298) = 58 × 10(6) s(–1).


Journal of the American Chemical Society | 2014

Lanthanide(III) Complexes with a Reinforced Cyclam Ligand Show Unprecedented Kinetic Inertness

Aurora Rodríguez-Rodríguez; David Esteban-Gómez; Raphaël Tripier; Gyula Tircsó; Zoltán Garda; Imre Tóth; Andrés de Blas; Teresa Rodríguez-Blas; Carlos Platas-Iglesias

Lanthanide(III) complexes of a cross-bridged cyclam derivative containing two picolinate pendant arms are kinetically inert in very harsh conditions such as 2 M HCl, with no dissociation being observed for at least 5 months. Importantly, the [Ln(dota)](-) complexes, which are recognized to be extremely inert, dissociate under these conditions with lifetimes in the range ca. 1 min to 12 h depending upon the Ln(3+) ion. X-ray diffraction studies reveal octadentate binding of the ligand to the metal ion in the [Eu(cb-tedpa)](+) complex, while (1)H and (13)C NMR experiments in D2O point to the presence of a single diastereoisomer in solution with a very rigid structure. The structure of the complexes in the solid state is retained in solution, as demonstrated by the analysis of the Yb(3+)-induced paramagnetic shifts.


Inorganic Chemistry | 2016

Cyclams with Ambidentate Methylthiazolyl Pendants for Stable, Inert, and Selective Cu(II) Coordination

Aurora Rodríguez-Rodríguez; Zakaria Halime; Luís M. P. Lima; Maryline Beyler; David Deniaud; Nicolas Le Poul; Rita Delgado; Carlos Platas-Iglesias; Véronique Patinec; Raphaël Tripier

Aiming to develop new copper chelates for application in nuclear medicine we report two new chelators, te1th and te2th, based on a cyclam backbone mono-N- or di-N1,N8-functionalized by methylthiazolyl arms. The acid-base properties of both ligands were investigated as well as their coordination chemistry, especially with Cu(2+), when possible in aqueous solution and in the solid state. Single-crystal X-ray diffraction structures of complexes were determined. Stability constants of the copper(II) and zinc(II) complexes showed that the complexes of both ligands with Cu(2+) are thermodynamically very stable, and they exhibit an important selectivity for Cu(2+) over Zn(2+). The kinetic inertness in acidic medium of both copper(II) complexes was evaluated revealing a quite good resistance to dissociation (the half-life times of complexes with te1th and te2th are 50.8 and 5.8 min, respectively, in 5 M HCl and 30 °C). The coordination geometry of the metal center in the complexes was established in aqueous solution based on UV-visible, electron paramagnetic resonance (EPR) spectroscopy, DFT studies, and NMR by using the zinc(II) complex analogues. The [Cu(te1th)](2+) and [Cu(te2th)](2+) complexes adopt trans-I and trans-III configurations both in the solid state and in solution, while the [Zn(te2th)](2+) complex crystallizes as the cis-V isomer but exists in solution as a mixture of trans-III and cis-V forms. Cyclic voltammetry experiments in acetonitrile point to a relatively easy reduction of [Cu(te2th)](2+) in acetonitrile solution (Epc = -0.41 V vs NHE), but the reduced complex does not undergo dissociation in the time scale of our electrochemical experiments. The results obtained in these studies revealed that despite the limited solubility of its copper(II) chelate, te2th is an attractive chelator for Cu(2+) that provides a fast complexation process while forming a complex with a rather high thermodynamic stability and kinetic inertness with respect to dissociation even upon electrochemical reduction.


Inorganic Chemistry | 2016

Complexation of Ln3+ Ions with Cyclam Dipicolinates: A Small Bridge that Makes Huge Differences in Structure, Equilibrium, and Kinetic Properties

Aurora Rodríguez-Rodríguez; Martín Regueiro-Figueroa; David Esteban-Gómez; Raphaël Tripier; Gyula Tircsó; Ferenc K. Kálmán; Attila Bényei; Imre Tóth; Andrés de Blas; Teresa Rodríguez-Blas; Carlos Platas-Iglesias

The coordination properties toward the lanthanide ions of two macrocyclic ligands based on a cyclam platform containing picolinate pendant arms have been investigated. The synthesis of the ligands was achieved by using the well-known bis-aminal chemistry. One of the cyclam derivatives (cb-tedpa(2-)) is reinforced with a cross-bridge unit, which results in exceptionally inert [Ln(cb-tedpa)](+) complexes. The X-ray structures of the [La(cb-tedpa)Cl], [Gd(cb-tedpa)](+), and [Lu(Me2tedpa)](+) complexes indicate octadentate binding of the ligands to the metal ions. The analysis of the Yb(3+)-induced shifts in [Yb(Me2tedpa)](+) indicates that this complex presents a solution structure very similar to that observed in the solid state for the Lu(3+) analogue. The X-ray structures of [La(H2Me2tedpa)2](3+) and [Yb(H2Me2tedpa)2](3+) complexes confirm the exocyclic coordination of the metal ions, which gives rise to coordination polymers with the metal coordination environment being fulfilled by oxygen atoms of the picolinate groups and water molecules. The X-ray structure of [Gd(Hcb-tedpa)2](+) also indicates exocyclic coordination that in this case results in a discrete structure with an eight-coordinated metal ion. The nonreinforced complexes [Ln(Me2tedpa)](+) were prepared and isolated as chloride salts in nonaqueous media. However, these complexes were found to undergo dissociation in aqueous solution, except in the case of the complexes with the smallest Ln(3+) ions (Ln(3+) = Yb(3+) and Lu(3+)). A DFT investigation shows that the increased stability of the [Ln(Me2tedpa)](+) complexes in solution across the lanthanide series is the result of an increased binding energy of the ligand due to the increased charge density of the Ln(3+) ion.


Inorganic Chemistry | 2012

Solution Structure of Ln(III) Complexes with Macrocyclic Ligands Through Theoretical Evaluation of 1H NMR Contact Shifts

Aurora Rodríguez-Rodríguez; David Esteban-Gómez; Andrés de Blas; Teresa Rodríguez-Blas; Mauro Botta; Raphaël Tripier; Carlos Platas-Iglesias


Dalton Transactions | 2015

Stable Mn2+, Cu2+ and Ln3+ complexes with cyclen-based ligands functionalized with picolinate pendant arms

Aurora Rodríguez-Rodríguez; Zoltán Garda; Erika Ruscsák; David Esteban-Gómez; Andrés de Blas; Teresa Rodríguez-Blas; Luís M. P. Lima; Maryline Beyler; Raphaël Tripier; Gyula Tircsó; Carlos Platas-Iglesias


Inorganica Chimica Acta | 2011

A merged experimental and theoretical conformational study on alkaline-earth complexes with lariat ethers derived from 4,13-diaza-18-crown-6

Israel Carreira-Barral; Aurora Rodríguez-Rodríguez; Martín Regueiro-Figueroa; David Esteban-Gómez; Carlos Platas-Iglesias; Andrés de Blas; Teresa Rodríguez-Blas


Chemistry: A European Journal | 2017

Definition of the Labile Capping Bond Effect in Lanthanide Complexes

Aurora Rodríguez-Rodríguez; Martín Regueiro-Figueroa; David Esteban-Gómez; Teresa Rodríguez-Blas; Véronique Patinec; Raphaël Tripier; Gyula Tircsó; Fabio Carniato; Mauro Botta; Carlos Platas-Iglesias


European Journal of Inorganic Chemistry | 2017

Spectroscopic Properties of a Family of Mono- to Trinuclear Lanthanide Complexes

Mohamadou Sy; David Esteban-Gómez; Carlos Platas-Iglesias; Aurora Rodríguez-Rodríguez; Raphaël Tripier; Loïc J. Charbonnière


Polyhedron | 2012

Solid state and solution structures of alkaline-earth complexes with lariat ethers containing aniline and benzimidazole pendants

Aurora Rodríguez-Rodríguez; Israel Carreira-Barral; Martín Regueiro-Figueroa; David Esteban-Gómez; Carlos Platas-Iglesias; Andrés de Blas; Teresa Rodríguez-Blas

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Raphaël Tripier

Centre national de la recherche scientifique

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Maryline Beyler

Centre national de la recherche scientifique

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Véronique Patinec

Centre national de la recherche scientifique

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