Institut de Chimie de la Matière Condensée de Bordeaux (ICMCB) - UMR 5026: Dépôts récents
Voici les éléments 4241-4260 de 5024
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Crystal engineering of conglomerates: dilution of racemate-forming Fe(II) and Ni(II) congeners into conglomerate-forming [Zn(bpy)3](PF6)2
(Chemistry. vol. 5, n° 1, pp. 255-268, 2023-02-15)Article de revue -
In situ X-ray diffraction study of a TiO2 nanopowder Spark Plasma Sintering under very high pressure
(Journal of the European Ceramic Society. vol. 43, n° 7, pp. 2783-2793, 2023)Article de revue -
Two new supramolecular architectures of singly phenoxo-bridged copper(II) and doubly phenoxo-bridged manganese(II) complexes derived from an unusual ONOO donor hydrazone ligand: syntheses, structural variations, cryomagnetic, DFT, and EPR studies
(European Journal of Inorganic Chemistry. n° 20, pp. 2915-2928, 2009)Article de revue -
Facile and green reduction of graphene oxide by a reduced polyoxometalate and formation of a nanohybrid
(ChemPlusChem. vol. 82, n° 2, pp. 186-189, 2017)Article de revue -
Optical and magnetic properties of the photo-induced state in the coordination network Na<sub>2</sub>Co<sub>4</sub>[Fe(CN)<sub>6</sub>]<sub>3.3</sub>.14H<sub>2</sub>O.
(New Journal of Chemistry. vol. 33, n° 6, pp. 1255-1261, 2009)Article de revue -
Cadmium sulfide nanoparticles trigger DNA alterations and modify the bioturbation activity of tubificidae worms exposed through the sediment
(Nanotoxicology. vol. 10, n° 3, pp. 322-331, 2015-09-29)Article de revue -
Phase formation and magnetic properties of nanocrytalline Ni70Co30 alloy prepared by mechanical alloying
(Journal of Alloys and Compounds. vol. 846, pp. 156392, 2020)Article de revue -
Synthesis, crystal structure, Mössbauer spectroscopy, optical and magnetic properties of Cs2M2Fe(PO4)3 (M = Mn, Co, Ni, Cu) ordered pollucite structure
(Journal of Solid State Chemistry. vol. 270, pp. 265-272, 2019-02)Article de revue -
Synthesis, X-ray structure and thermal behavior of the new superprotonic conductor Cs2(HSeO4)(H2PO4)
(Journal of Molecular Structure. vol. 842, n° 1-3, pp. 81-92, 2007)Article de revue -
Novel Mixed Cobalt/Chromium Phosphate NaCoCr2(PO4)3 Showing Spin-Flop Transition.
(Inorganic Chemistry. vol. 54, n° 15, pp. 7345-7352, 2015)Article de revue -
Dielectric response of ceramic Sr2−xBixTi2−xFexO6 (0≤x≤1.5) perovskites
(Journal of Physics and Chemistry of Solids. vol. 81, pp. 40-49, 2015)Article de revue -
Crystal structure and thermal stability of new iron phosphates KMFe(PO4)2 (M = Ni, Mg, and Co)
(Journal of Structural Chemistry. vol. 56, n° 4, pp. 714-722, 2015-07)Article de revue -
Synthesis and characterization of the phosphates Na1+xMg1+xCr2−x(PO4)3 (x = 0; 0.2) and NaZnCr2(PO4)3 with the α-CrPO4 structure
(Journal of Alloys and Compounds. vol. 627, pp. 153-160, 2015)Article de revue -
Crystal structure of bis 4-benzyl piperidinium bis dihydrogenmonophosphate trihydrogenmonophosphate
(Journal of Chemical Crystallography. vol. 36, n° 2, pp. 111-116, 2006)Article de revue -
Characterization by X-ray diffraction, magnetic susceptibility and Mössbauer spectroscopy of a new alluaudite-like phosphate : Na4CaFe4(PO4)6
(Journal of Solid State Chemistry. vol. 177, n° 1, pp. 55-60, 2004)Article de revue -
X-ray diffraction, 31P NMR and europium photoluminescence properties of the Na2Ba1−xSrxMg(PO4)2 system related to the glaserite type structure
(Journal of Molecular Structure. vol. 1083, pp. 319-329, 2015)Article de revue -
Li0.75Mn1.50Fe1.75(PO4)3: First alluaudite-type iron phosphate containing only Li+ as alkaline ions
(Journal of Solid State Chemistry. vol. 265, pp. 12-17, 2018)Article de revue -
Structural investigation of the alluaudite-like mixed-valence iron phosphate: Na1.25Mg1.10Fe1.90(PO4)3
(Journal of Alloys and Compounds. vol. 450, n° 1-2, pp. 301-305, 2008)Article de revue -
Crystal structure, Mössbauer spectroscopy and magnetic properties of a new potassium iron oxyphosphate K11Fe15(PO4)18O related to the Langbeinite-like compounds
(Journal of Alloys and Compounds. vol. 361, n° 1-2, pp. 77-83, 2003)Article de revue -
A new set of K3Fe3(PO4)4·yH2O (0 ≤ y ≤ 1) layered phases obtained by topotactic reactions
(Journal of Solid State Chemistry. vol. 262, pp. 112-120, 2018)Article de revue