45 results on '"Gomez-Garcia, C.J."'
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2. Magnetic properties of vanadium(IV)-based extended systems: [(VO)3(μ-PO4)2(2,2′-bpy)(μ-OH2)]·1/3H2O and (VO)2H4P2O9
3. Comparison among superconducting models for β″-ET 4[(H 3O)Fe(C 2O 4) 3]·C 6H 5Br single crystals by scanning tunnelling spectroscopy
4. Crystal growth of Hg1−xMnxSe for infrared detection
5. Molecule-based magnets formed by bimetallic three-dimensional oxalate networks and chiral Tris(bipyridyl) complex cations. the series [Z(sup)II(bpy)(sub)3][CIO(sub)4][M(sup)IICr(sup)III(ox)(sub)3] (Z(sub)II = Ru, Fe, Co, and Ni; M(sub)II = Mn, Fe, Co, Ni, Cu, and Zn; ox = oxalate dianion)
6. Bimetallic cyanide-bridged complexes based on the photochromic nitroprusside anion and paramagnetic metal complexes. syntheses, and physical characterization of the coordination compounds [Ni(en)(sub)2](sub)4[Fe(CN)(sub)5NO](sub)2[Fe(CN0(sub)6].5H(sub)2O, [Ni(en)(sub)2][Fe(CN)(sub)5NO].3H(sub)2O, [MN(3-MeOsalen)(H(sub)2O](sub)2[Fe(CN)(sub)5NO], and [Mn(5-Brsalen)](sub)2[Fe(CN)(sub)5NO]
7. Hybrid molecular materials based upon the photochromic nitroprusside complex,[Fe(CN)5NO](super 2-), and organic pi-electron donors. Synthesis, structure, and properties of the radical salt (TTF)7[Fe(CN)5NO]2 (TTF = tetrathiafulvalene)
8. New magnetic conductors and superconductors based on BEDT-TTF and BEDS-TTF
9. A new BEDT-TTF salt and polypyrrole films containing the chiral polyoxometalate [H 4Co 2Mo 10O 38] 6−
10. Polynitrile anions as ligands: synthesis, structure and magnetic properties of a new three-dimensional coordination polymer with the 2-dicyanomethylene-1,1,3,3-tetracyanopropanediide (tcpd 2−) bridging ligand
11. Two bimetallic layered materials with “Cu 4Fe 3” defective cubane units: syntheses, structures and magnetic properties of {[Cu II(tn)] 2[Fe II(CN) 6]} 3·[Na3Fe III(CN) 6]·12H 2O (1) and {[Cu II(tn)] 2[Fe II(CN) 6]}·KCl·5H 2O(2)
12. Diamagnetic and paramagnetic keggin polyoxometalate salts containing 1-D and 3-D decamethylferrocenium networks: preparation, crystal structures, and magnetic properties of (Fe(sub 5)Me(sub 5)(sub 2))4(POM)(solv)n (POM = (SiMo(sub 12)O(sub 40)))(super 4-), (SiW(sub 12)O(sub 40))(super 4-, (PMo(sub 12)O(sub 40)))(super 4-), (HFeW(sub 12)O(sub 40)(super 4-)); solv = H(sub 2)O, C(sub 3)H(sub 7)
13. Single-crystal X-ray structure and magnetic properties of the polyoxotungstate complexes Na(sub 16)(M(sub 4)(H(sub 2)O)(sub 2)(P(sub 2)W(sub 15)O(sub 56))(sub 2)).nH(sub 2)O (M = Mn(super II), n = 53; M = Ni(super II), n = 52): an antiferromagnetic Mn(super II) tetramer and a ferromagnetic Ni(super II) tetramer
14. A tetranuclear rhomblike cluster of manganese(II): crystal structure and magnetic properties of the heteropoly complex K10(Mn4(H2O)2(PW9O34)2).20H2O
15. Crystal structure and magnetic properties of K5.5Na1.5(PW10Cu2 H2O 2O38).13H2O. Substituted Keggin heteropolytungstates of the type PW10Cu2 containing exchange-coupled copper pairs
16. Multifunctionality in hybrid molecular materials: Design of ferromagnetic molecular metals
17. Magnetoresistance studies of the ferromagnetic molecular metal (BEDT-TTF) 3[MnCr(C 2O 4) 3] under pressure
18. A New Conducting Molecular Solid Based on the Magnetic [Ni(dmf) 6] 2+ Cation and on [Ni(dsit) 2] 22− (dsit=1,3-dithiole-2-thione-4,5-diselenolate) Showing an Unprecedented Anion Packing
19. A Comparative Structural and Magnetic Study of Three Compounds Based on the Cluster Unit M4Cl8(THF)6 (M=Mn, Fe, Co)
20. A new approach to the crystal growth of Hg 1− xMn xTe by the cold travelling heater method (CTHM)
21. Spin crossover phenomenon of a semi-fluorinated iron (II) complex organized in a Langmuir–Blodgett film
22. Magnetic conductors. Current approaches and achievements
23. Molecular conductors based upon TTF-type donors and octahedral magnetic complexes
24. A molecular chemical approach to the magnetic multilayers
25. Synthesis, crystal structure, and physical properties of (BEDT-TTF)[Ni(tdas)2] (BEDT-TTF = bis(ethylenedithio)tetrathiafulvalene; tdas = 1,2,5-thiadiazole-3,4-dithiolate): First monomeric [Ni(tdas)2](super -)
26. Magnetic LB films based upon polyoxometalate clusters and single molecule nanomagnets
27. Hybrid molecular magnets incorporating organic donors and other electroactive molecules
28. Molecular hybrids formed by oxalate bridged dinuclear anions and organometallic cations
29. Radical cation salts based on BEDT-TTF and the paramagnetic anion [Cr(NCS) 6] 3−
30. Polyoxometalates in Langmuir–Blodgett films: toward new magnetic materials
31. Physical properties of BEDT-TTF radical ion salts with Keggin type polyoxometalates
32. Organic-inorganic salts made by TTF and magnetic clusters
33. An organic-inorganic salt containing mixed-valence TTF chains and the molecular metal oxide cluster [Mo8O26]−4. Preliminary spectroscopic, conducting and magnetic properties of the compound (TTF)7Mo8O26
34. Electron transfer in tetranuclear mixed-valence iron clusters. Role of the topology on the magnetic properties
35. Hybrid Molecular Materials Formed by Magnetic and Conducting Networks Based on Inorganic Metal Complexes and Organic Donors
36. Magnetic LB films based upon polyoxometalate clusters and single molecule nanomagnets
37. Magnetic excitations in an exchange-coupled tetramer cluster of cobalt (II): a study by inelastic neutron scattering
38. Role of the topology on the magnetic properties of mixed-valence trinuclear manganese clusters
39. Hybrid molecular materials having conducting and magnetic networks: Charge transfer salts based on organic π-donor molecules and inorganic magnetic clusters.
40. Electron transfer in mixed-valence tetranuclear iron clusters. Orbital effects and magnetic properties
41. A new family of hybrid materials formed by TTF layers and oxalato-bridged bimetallic magnetic clusters.
42. Phase transitions in [κ-(ET 4N)ET 4M(CN) 6, 3 H 2O; M = Fe III, Co III, Cr III]
43. Magnetic transition metal complexes of tetrathiafulvalene (TTF) derivatives
44. Magnetic properties of BEDT-TTF radical ion salts with Keggin type polyoxometalates
45. Magnetic properties of mixed-valence tetranuclear iron clusters: electron transfer versus exchange interactions
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