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M. Teresa Moreno

Researcher at University of La Rioja

Publications -  87
Citations -  2621

M. Teresa Moreno is an academic researcher from University of La Rioja. The author has contributed to research in topics: Bridging ligand & Chemistry. The author has an hindex of 29, co-authored 81 publications receiving 2397 citations. Previous affiliations of M. Teresa Moreno include Spanish National Research Council.

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Synthesis, structural characterization, and photophysical properties of palladium and platinum(II) complexes containing 7,8-benzoquinolinate and various phosphine ligands.

TL;DR: A series of mononuclear cyclometalated benzo[h]quinolinate platinum and palladium(II) complexes with phosphine ligands, namely, [M(bzq)ClL], show strong luminescence in both solid state and frozen solutions and the influence of the coligands on the photophysics of the platinum complexes has been examined.
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Synthesis of mono- and polynuclear perhalophenyl palladium-platinum acetylide complexes. Molecular structure of (NBu4)2[Pt2Ag2(C6F5)4(CCPh4] · 4CH2Cl2

TL;DR: The reaction between [Ag(CCR)]n (R = tBu, Ph) and the appropriate mononuclear palladium or platinum substrate affords mononucleus derivatives of the type [M(C6F5)L2] (M = Pd, Pt; R = tB, Ph; L = PPh3, dppe) as mentioned in this paper.
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Versatile Behavior of [Pt2Ag4(C⋮C-t-Bu)8]: Synthesis, Structures, and Properties of [{Pt2Ag4(C⋮C-t-Bu)8}{Ag(bipy)}]4+ and an Unprecedented Chain Polymeric Cocrystallization Adduct with a 2,2‘-bipy Ligand

TL;DR: In this paper, an unusual polymeric adduct was obtained from the reaction of the hexanuclear cluster [Pt2Ag4(C⋮C-t-Bu)8] with 2,2'bipy independently of the molar ratio (1:1 or 1:excess) employed.
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Influence of solvent and weak C-H...O contacts in the self-assembled [Pt2M4{CC(3-OMe)C6H4}8] (M = Cu, Ag) clusters and their role in the luminescence behavior.

TL;DR: A remarkable quenching and a shift to higher energies in the emission is observed on changing from CH2Cl2 to THF, and for both 1 and 2, the emission spectra at 77 K varies with the concentration, showing their tendency to stack even in glass.