104 results on '"Mosset, Alain"'
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2. Crystal structure of anhydrous bismuth iodate, Bi(IO3)3
3. New potential materials for infrared nonlinear optics. Preparation, characterisation and optical transparency of monometallic and bimetallic iodates
4. A new synthetic method toward bimetallic ruthenium platinum nanoparticles; composition induced structural changes
5. [CaSb2(EDTA)2(H2O)8]n: synthesis, crystal structure, and thermal behavior
6. [NaBi(EDTA)(H2O)3]n: synthesis, crystal structure, and thermal behavior
7. Crystal structure of aquo (hydroxo) (ethylenediaminetetraacetato) sodium(I) tin(IV), NaSn(OH)(edta)(H2O)
8. X-ray synchrotron radiation and inorganic structural chemistry
9. X-ray synchrotron radiation and inorganic structural chemistry
10. New Iodate Materials as Potential Laser Matrices. Preparation and Characterization of α‐Ln(IO3)3 (Ln: Y, Dy) and β‐Ln(IO3)3 (Ln: Y, Ce, Pr, Nd, Eu, Gd, Tb, Dy, Ho, Er). Structural Evolution as a Function of the Ln3+ Cationic Radius.
11. New iodate materials as potential laser matrices. Preparation and characterisation of α-M(IO3)3 (M=Y, Dy) and β-M(IO3)3 (M=Y, Ce, Pr, Nd, Eu, Gd, Tb, Dy, Ho, Er). Structural evolution as a function of the Ln3+ cationic radius
12. New Potential Materials for Infrared Nonlinear Optics. Preparation, Characterization and Optical Transparency of Monometallic and Bimetallic Iodates.
13. New materials for infrared non-linear optics. Syntheses, structural characterisations, second harmonic generation and optical transparency of M(IO3)3 metallic iodates
14. Crystal structure of M(IO3)2metal iodates, twinned bypseudo-merohedry, with MII: MgII, MnII, CoII, NiIIand ZnII
15. Polymorphism of Anhydrous Cadmium Iodate Structure of ɛ-Cd(IO3)2.
16. Polymorphism of Anhydrous Cadmium Iodate Structure of ε‐Cd(IO3)2
17. Crystal Structure of a Cadmium Iodate Monohydrate: Cd(IO3)2×H2O.
18. Two Mercury Chloro Thiocyanate Complexes: NH4[HgCl2(SCN)] and NH4[HgCl(SCN)2].
19. Two Mercury Chloro Thiocyanate Complexes: NH4[HgCl2(SCN)] and NH4[HgCl(SCN)2]
20. Crystal Engineering Strategy for Quadratic Nonlinear Optics. Part 2. Hg(IO3)2.
21. Crystal engineering strategy for quadratic nonlinear optics. Part II: Hg(IO3)2
22. ChemInform Abstract: Crystal Engineering Strategy of Thiocyanates for Quadratic Nonlinear Optics. Hg3CdCl2(SCN)6 and Hg4CdBr4(SCN)6.
23. Crystal engineering strategy of thiocyanates for quadratic nonlinear optics. Hg3CdCl2(SCN)6 and Hg4CdBr4(SCN)6
24. New potential open-framework materials in gallophosphate systems. Preparation and crystal structure of [NH3(CH2)3NH3]Ga3(PO4)3(OH)2·H2O and [NH2(CH2)3NH2]Ga3(PO4)3(H2O)
25. Synthesis and Characterization of CoO, Co3O4, and Mixed Co/CoO Nanoparticules
26. Heterometallic Borole Complexes of Iron and Gold
27. Structural Study by Wide-Angle X-ray Scattering of the Spin Transition Molecular Materials [Fe(Htrz)2(trz)](BF4) and [Fe(NH2trz)3](NO3)2(Htrz = 1,2,4-4H-Triazole, trz = 1,2,4-Triazolato)
28. Platinum nanoparticles stabilized by CO and octanethiol ligands or polymers: FT-IR, NMR, HREM and WAXS studies
29. Synthèse et structure d’un oxalate de gadolinium ne contenant pas de molécule d’eau libre, [Gd(H2O)3]2(C2O4)3
30. The stabilization of γ-Ce2S3 at low temperature by heavy rare earths
31. A Wide Angle X-Ray Scattering (WAXS) Study of Nonstoichiometric Nickel Manganite Spinels NiMn2□3δ/4O4+δ
32. Low-temperature process of the cubic lanthanide sesquisulfides:remarkable stabilization of the γ-Ce2S3 phasei
33. LiSb(edta)(H2O): a convenient preserser to LiSbS2 and LiSbO3
34. A new solution route to silicates. Part 4.—Subtnicronic zircon powders
35. Structural evolution of non-crystalline SiC precursors prepared from tetra methoxysilane (TMOS) and phenol resin
36. New precursors in the chemistry of IVB transition metal alkoxides V. Synthesis and molecular structure of Zr3Fe(μ4-O)(μ2-OC3H7)6-(OC3H7)4(acac)3
37. New compounds in the chemistry of Group 4 transition-metal alkoxides. Part 4. Synthesis and molecular structures of two polymorphs of [Ti16O16(OEt)32] and refinement of the structure of [Ti7O4(OEt)20]
38. New precursors in the chemistry of IVB transition metal alkoxides II. Synthesis and molecular structure of Zr2Co4(μ6-O)(μ2-OC3H7)8(OC3H7)2(acetylacetone)4
39. New iodate materials as potential laser matrices. Preparation and characterisation of α-M(IO3)3 (M=Y, Dy) and β-M(IO3)3 (M=Y, Ce, Pr, Nd, Eu, Gd, Tb, Dy, Ho, Er). Structural evolution as a function of the Ln3+ cationic radius
40. Large-angle X-ray scattering study and magnetic properties of amorphous complexes [MM′(cdta)]·n H2O (M, M′= CoII, NiII, CuII, or ZnII; cdta =trans-cyclohexane-1,2-diamine-NNN′N′-tetra-acetate)
41. Crystal structure of anhydrous bismuth iodate, Bi(IO3)3.
42. Crystal engineering strategy of thiocyanates for quadratic nonlinear optics. Hg3CdCl2(SCN)6 and Hg4CdBr4(SCN)6
43. Structure and solvation of mercury(II) iodide, bromide, and chloride in pyridine solution; refinement of the crystal structure of di-iodobis(pyridine)mercury(II), [HgI2(py)2].
44. [NaBi(EDTA)(H2O)3]n: synthesis, crystal structure, and thermal behavior.
45. Crystal structure of aquo (hydroxo) (ethylenediaminetetraacetato) sodium(I) tin(IV), NaSn(OH)(edta)(H2O)
46. Structural analysis of amorphous V2O5 by large-angle X-ray scattering
47. Polynuclear platinum complexes deriving from squaric acid
48. A LAXS (large angle x-ray scattering) and EXAFS (extended x-ray absorption fine structure) investigation of conductive amorphous nickel tetrathiolato polymers
49. Metal complexes of rubeanic acid. 3. Large-Angle x-ray scattering studies of amorphous copper(II) and nickel(II) complexes
50. ChemInform Abstract: NEUE KOORDINATIONSVERBINDUNGEN DES KUPFERS MIT BESTANDTEILEN VON NUCLEINSAEUREN
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