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Polynuclear NiII and MnII azido bridging complexes. Structural trends and magnetic behavior Ribas, J.; Escuer, A.; Monfort, M.; Vicente, R.; Cortés, R.; Lezama, L.; Rojo, T. Coordination Chemistry Reviews, 193-195, 1027-1068, 1999. | Azide as Bridging Ligand and Magnetic Coupler in Transition Metal Clusters Escuer, A.; Aromí, G. European Journal of Inorganic Chemistry, 4721-4736, 2006 |
The sulfate ligand as a promising "player" in 3d-metal cluster chemistry Papatriantafyllopoulou, C.; Manessi-Zoupa, E.; Escuer, A.; Perlepes, S. P. Inorganica Chimica Acta, 362, 634-50, 2009 | The bridging azido ligand as a central “player” in high-nuclearity 3d- metal cluster chemistry Escuer, A.; Esteban, J.; Perlepes, S. P.; Stamatatos, T. C. Coordination Chemistry Reviews, 275, 87-129, 2014 |
A biocompatible ZnNa2-based metal–organic framework with high ibuprofen, nitric oxide and metal uptake capacity. Winterlich, M.; Efthymiou, C. G.; Papawassiliou, W.; Carvalho, J. P. ; Pell, A. J.; Mayans, J.; Escuer, A.; Carty, M. P.; McArdle, P.; Tylianakis, E.; Morrison, L.; Froudakis, G.; Papatriantafyllopoulou, C. Materials Advances, 1, 2248-2260, (2020) | Chiral versus non-chiral [MnIII6MnIINaI], [MnIII6MnII2NaI2] and [MnIII3MnIINaI] clusters derived from Schiff bases or the fight for symmetry. Pilichos, E.; Mayans, J.; Font-Bardia, M..; Escuer, A. Chem.-A Eur. J., 26, 13053-13062, (2020) | Correlating the axial Zero Field Splitting with the slow magnetic relaxation in GdIII SIMs Mayans, J.; Escuer, A. Chem. Commun., 57, 721-724, (2021) |
{Ni4} cubanes from enantiomerically pure 2-(1-hydroxyethyl)pyridine ligand: supramolecular chirality. Mayans, J.; Athanasopoulou, A. A.; Pham, A. T.; Font-Bardia, M.; Mazarakioti, E. C.; Pilkington, M.; Stamatatos, T. C.; Escuer, A. Dalton Transactions, 48, 10427-10434, (2019) | Chiral [MnIIMnIII3M'] (M' = NaI, CaII, MnII) and [MnIIMnIII6NaI2] clusters built from an enantiomerically pure Schiff base: synthetic, chiroptical and magnetic properties Mayans, J.; Font-Bardia, M.; Di Bari, L.; Górecki, M.; Escuer, A. Chem.-A Eur. J., 24, 18705-18717, (2018) | Mn3III complexes derived from R/S- Schiff bases: chiral Single-Molecule-Magnets Escuer, A.; Mayans, J.; Font-Bardia, M.; Di Bari, L.; Górecki, M. Eur. J. Inorg. Chem. 991-998, (2017) |
A Mn6 Cluster inside a Mn10 Wheel: Characterization of a Mn16-Oximate Complex Resulting from a Tetrazole-2- pyridylketoneoximate Ligand Alcazar, L: Font-Bardia, M.; Escuer, A. Eur. J. Inorg. Chem. 1326-1329, (2015). | New Classes of Inorganic Materials with Exclusively End-on Azido Ligands: Transition Metal Clusters and Coordination Polymers Exhibiting SMM Behavior and Long-Range Ferromagnetic Ordering Alexandropoulos, D. I.; Cunha-Silva, L.; Escuer, A.; Stamatatos, T. C. Chem. Eur. J. 20, 13860-13864, (2014) | Structural Aesthetics in Molecular Nanoscience: A Unique ‘Rabbit’-shaped Ni26 Cluster and a Discrete Ni18 ‘Molecular Chain’ Athanasopoulou, A. A.; Pilkington, M.; Raptopoulou, C. P.; Escuer, A.; Stamatatos, T. C. Chem. Commun. 50, 14942-14945, (2014) |
Building of a novel Mn12 Single Molecule Magnet by assembly of anisotropic {Mn3(m3-O)(salox)3}+ triangles
Cordero, B.; Escuer, A.; Teat, S. J.; Roubeau, O. | Initial employement of di-2-pyridylketone as a route to nickel(II)/lanthanide(III) clusters: triangular Ni2Ln complexes
Efthymiou, C. G. ; Georgopoulou, A. N.; Papatriantafyllopoulou, C.;
Terzis, A.; Raptopoulou, C. P.; Escuer, A.; Perlepes, S. P. | Substituted m-phenylene bridges as strong ferromagnetic couplers for Cu-bridge-Cu magnetic interactions: new perspectives.
Paital, A.R.; Mitra, T.; Ray, D.; Wong, W.T.; Ribas-Ariño, J.; Novoa, J.J.; Ribas, J.; Aromí, G. |
Synthesis,
structural characterisation and Monte Carlo simulation of the magnetic
properties of the 3D-stacked honeycomb Csn[{Mn(N 3)3}n] and the
irregular double chain [{N(C2H5)4}n][Mn2 (N3)5(H2O)}n]
Goher, M.A.S.; Cano, J.; Journaux, Y.; Abu-Youssef, M.A.M.; Mautner, F.A.; Escuer, A.; Vicente, R. | ||
Author: Prof. J. Ribas Ediciones Omega, S.A., (2000) |
Author: Prof. J. Ribas Ed. Wiley-VCH, 2008 |