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Francesc Lloret

Researcher at University of Valencia

Publications -  37
Citations -  2745

Francesc Lloret is an academic researcher from University of Valencia. The author has contributed to research in topics: Crystal structure & Magnetic susceptibility. The author has an hindex of 28, co-authored 37 publications receiving 2603 citations. Previous affiliations of Francesc Lloret include University of Giessen & University of La Laguna.

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Magnetic properties of six-coordinated high-spin cobalt(II) complexes: Theoretical background and its application

TL;DR: In this paper, an empirical expression to fit the magnetic susceptibility of polycrystalline samples of mononuclear Co(II) complexes with an axial distortion, the variable parameters being Δ (axial distortion), α (orbital reduction factor), and λ (spin-orbit coupling), was proposed.
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Ligand design for multidimensional magnetic materials: a metallosupramolecular perspective.

TL;DR: The aim and scope of this review is to show the general validity of the 'complex-as-ligand' approach for the rational design of metallosupramolecular assemblies of increasing structural and magnetic complexity.
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Ferromagnetism in Malonato-Bridged Copper(II) Complexes. Synthesis, Crystal Structures, and Magnetic Properties of {[Cu(H2O)3][Cu(mal)2(H2O)]}n and {[Cu(H2O)4]2[Cu(mal)2(H2O)]}[Cu(mal)2(H2O)2]{[Cu(H2O)4][Cu(mal)2(H2O)2]} (H2mal = malonic Acid)

TL;DR: The copper environment in the mononuclear unit is that of an elongated octahedron with four carboxylate oxygens building the equatorial plane and two water molecules assuming the axial positions, and the environment of the copper atoms is distorted square pyramidal with four water molecules building the basal plane and a car boxylate oxygen in the apical position.
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Magnetic coupling through the carbon skeleton of malonate in two polymorphs of ([Cu(bpy)(H2O)][Cu(bpy)(mal)(H2O)])(ClO4)2 (H2mal = malonic acid; bpy = 2,2'-bipyridine).

TL;DR: Two polymorphic malonato-bridged copper(II) complexes have been prepared and their structures solved by X-ray diffraction methods, and the analysis of the magnetic data through a numerical expression derived for the real topology of 1 and 2, that is, chains of isosceles triangles with twoachain exchange pathways.
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Weak Ferromagnetism in Chiral 3-Dimensional Oxalato-Bridged Cobalt(II) Compounds. Crystal Structure of [Co(bpy)3][Co2(ox)3]ClO4

TL;DR: The influence of the size of the [M(bpy)3]n+ complex on the spin-canted structure is discussed and the occurrence of weak ferromagnetism and no magnetic ordering is observed in 3.