All Stories

  1. Congratulations to Dietrich Gudat
  2. On halide derivatives of rare-earth metal(III) oxidomolybdates(VI) and -tungstates(VI)
  3. Solvochemical Synthesis and Crystal Structure of the Fluoride‐Derivatized Early Lanthanoid(III) ortho‐Oxidomolybdates(VI) LnF[MoO4] (Ln = Ce–Nd)
  4. Synthesis, crystal structure and spectroscopic properties of a novel yttrium(iii) fluoride dimolybdate(vi): YFMo2O7
  5. Tetrayttrium difluoride disilicate orthosilicate, Y4F2[Si2O7][SiO4]
  6. Syntheses and Crystal Structures of the Bromide-derivatized Lanthanoid(III) Ortho-Oxomolybdates(VI) LnBr[MoO4] (Ln = Pr, Nd, Sm, Gd– Lu)
  7. The defect scheelite-type lanthanum(III)ortho-oxidomolybdate(VI) La0.667[MoO4]
  8. Yttrium(iii) oxomolybdates(vi) as potential host materials for luminescence applications: an investigation of Eu3+-doped Y2[MoO4]3 and Y2[MoO4]2[Mo2O7]
  9. Syntheses, Crystal Structures, and Twinning of the Isotypic Rare‐Earth Metal Bromide Ortho‐Oxidomolybdates LaBrMoO4 and CeBrMoO4
  10. Crystal Structure of Gd6Mo10O39
  11. On the Synthesis and Addition Reactions of Chiral N-Heterocyclic Diphosphines
  12. Filling Gaps in the Series of Noninnocent Hetero-1,3-diene Chelate Ligands: Ruthenium Complexes of Redox-Active α-Azocarbonyl and α-Azothiocarbonyl Ligands RNNC(R′)E, E = O or S
  13. Defect Scheelite-Type Lanthanoid(III) Ortho-Oxomolybdates(VI) Ln0.667[MoO4] (Ln = Ce, Pr, Nd, and Sm) and Their Relationship to Zircon and the NaTl-Type Structure
  14. Scheelite-type sodium neodymium(III)ortho-oxidomolybdate(VI), NaNd[MoO4]2
  15. The Non‐Centrosymmetric Crystal Structure of Molybdenum(VI) Oxide Bromide MoO2Br2
  16. Coordination of a Hemilabile N,N,S Donor Ligand in the Redox System [CuL2]+/2+, L = 2‐Pyridyl‐N‐(2′‐alkylthio­phenyl)methyleneimine
  17. 2,3-Bis(1-methylimidazol-2-yl)quinoxaline (bmiq), a new ligand with decoupled electron transfer and metal coordination sites: the very different redox behaviour of isoelectronic complexes with [PtCl2] and [AuCl2]+
  18. Ce2[MoO5][MoO4] and Ce5[MoO4]8: Two New Cerium Oxomolybdates, Each Exhibiting a Special Structural Feature
  19. Eu3+‐dotierte Yttrium(III)‐Oxomolybdate(VI) als Lumineszenzmaterialien mit “anorganischem Antenneneffekt”
  20. Chloride Derivatives of Lanthanide Ortho‐Oxomolybdates:, 3. Crystal Structures, Spectroscopic Studies, and Magnetic Properties of the LnCl[MoO4] Representatives with the Large Lanthanides (Ln = La, Ce, Pr) 
  21. Synthesis, Structure, and Spectroscopic Properties of the New Lanthanum(III) Fluoride Oxomolybdate(VI) La3FMo4O16
  22. Chelation and Bridging of Zinc(II) by Tetradentate N2S2Donor Ligands: Similarities and Differences to Copper(I) and Copper(II) Systems 
  23. Eu3F4S2: Synthesis, crystal structure, and magnetic properties of the mixed-valent europium(II,III) fluoride sulfide EuF2·(EuFS)2
  24. Chloride Derivatives of Lanthanide Ortho‐Oxomolybdates: 2. The Unique Crystal Structure of NdCl[MoO4] in the LnCl[MoO4] Series 
  25. A Five-Center Redox System: Molecular Coupling of Two Noninnocent Imino-o-benzoquinonato-Ruthenium Functions through a π Acceptor Bridge
  26. Structures, Redox and Spectroscopic Properties of PdII and PtII Complexes Containing an Azo Functionality
  27. Structures, Redox and Spectroscopic Properties of PdII and PtII Complexes Containing an Azo Functionality
  28. Chloride Derivatives of Lanthanide Ortho‐Oxomolybdates: 1. Structural Comparison, Magnetic Properties, and Luminescence of the LnCl[MoO4] Representatives with the Smaller Lanthanides (Ln = Sm–Lu)
  29. Structure, electrochemistry, spectroscopy, and magnetic resonance, including high-field EPR, of {(μ-abpy)[Re(CO)3X]2}o/•−, where abpy=2,2′-azobispyridine and X=F, Cl, Br, I
  30. Combining two non-innocent ligands in isomeric complexes [Pt(pap)mQn]0 (pap = phenylazopyridine, Q = 3,5-di-tert-butyl-benzoquinone
  31. Benzo-1,3,2-diazaphospholide and benzo-1,3,2-diazaphospholium: an isoelectronic aromatic anion–cation pair
  32. Carboxyl-Functionalized Task-Specific Ionic Liquids for Solubilizing Metal Oxides
  33. Crystal structure, spectroscopic properties, and magnetic behavior of the fluoride-derivatized lanthanoid(III) ortho-oxomolybdates(VI) LnF[MoO4] (Ln=Sm–Tm)
  34. Die Kristallstruktur von Samarium‐Sesquimolybdat Sm2[MoO4]3
  35. A Phosphanyl‐Substituted Benzo‐1,3,2‐Dioxaborol as Ambiphilic Bifunctional Lewis Donor–Acceptor Unit
  36. YF[MoO4] and YCl[MoO4]: Two Halide Derivatives of Yttrium ortho-Oxomolybdate: Syntheses, Structures, and Luminescence Properties
  37. Double cyclometallation of bridging 3,6-bis(2-thienyl)-1,2,4,5-tetrazine in a dinuclear mesityl(dimethylsulfoxide)platinum(II) complex: Structure and properties
  38. Hydrogenoxosilicates of the lanthanides
  39. Thiosilicate der Selten‐Erd‐Elemente: IV. Die quasi‐isostrukturellen Verbindungen NaSm3S3[SiS4], CuCe3S3[SiS4], Ag0,63Ce3S2,63Cl0,37[Si...
  40. Na3F[WO4]: A Sodium Fluoride Ortho‐Oxotungstate(VI) with Strands of Face‐Shared Fluoride‐Centred Sodium Octahedra According to $^{1}_{\infty}\rm \{[FNa_{6/2}]^{2+}\}$
  41. p-Cymene ruthenium thioether complexes
  42. Synthesis, Structures, and Properties of Layered Quaternary Chalcogenides of the General Formula ALnEQ4 (A = K, Rb; Ln = Ce, Pr, Eu; E = Si, Ge; Q = S, Se)
  43. NaPr6Cl12[SiO4][PO4] and La6.333Cl12[SiO4][PO4]: Two chloride silicate phosphates of rare-earth metals with cation-filled channel structures
  44. Synthesis and Crystal Structure of the Neodymium Sulfate Nitrate Trihydrate Nd[SO4][NO3]·3H2O
  45. CuGd3SiS7: Ein Gadoliniumsulfid mit zwei isolierten komplexen Thioanionen gemäß Gd3[CuS3][SiS4]
  46. The lanthanoid(III) chloride cyclo-tetrasilicates M6Cl10[Si4O12] (M=Sm, Gd–Dy): Synthesis, structure and IR investigations
  47. The non-isotypic pair CsCe[SiS4] and CsCe[SiSe4]: A structural comparison
  48. Tethering versus Non‐Coordination of Hydroxy and Methoxy Side Chains in Arene Half Sandwich Dichloro Ruthenium Complexes
  49. Über Oxotantalate der Lanthanide des Formeltyps MTaO4 (M = La – Nd, Sm – Lu)
  50. Thiosilicate der Selten‐Erd‐Elemente: III. KLa[SiS4] und RbLa[SiS4] – Ein struktureller Vergleich
  51. M4,667Ch[SiO4]3 (M = Nd, Sm; Ch = O, S): structural comparison of two apatite-type lanthanoid chalcogenide ortho-oxosilicates
  52. A complete series of tricarbonylhalidorhenium(I) complexes (abpy)Re(CO)3(Hal), Hal=F, Cl, Br, I; abpy=2,2′-azobispyridine: Structures, spectroelectrochemistry and EPR of reduced forms
  53. Gd4, 667S[SiO4]3: Ein Gadoliniumsulfid‐ortho‐silicat im Bromapatit‐Typ
  54. Er2S[SiO4]: Ein Erbiumsulfid‐ortho‐Oxosilicat mit ungewöhnlicher Sulfidionen‐Koordination
  55. Metal‐Induced Tautomerization of p‐ to o‐Quinone Compounds: Experimental Evidence from CuI and ReI Complexes of Azophenine and DFT Studies
  56. 3, 6‐Bis(2‐pyrazinyl)‐1, 2, 4, 5‐tetrazin: Ein neuer mehrfunktioneller Ligand und sein syn, fac‐konfigurierter Bis(tricarbonylchlororhenium)‐Komplex
  57. Thiosilicate der Selten‐Erd‐Elemente: II. Die nichtzentrosymmetrischen Caesium‐Derivate CsM[SiS4] (M = Sm — Tm)
  58. (Allenylidene)ruthenium Complexes with Redox‐Active Substituents and Ligands
  59. NaY 3 S 3 [SiS 4 ]: a sodium-containing yttrium sulfide thiosilicate with channel structure
  60. Serendipitous Formation of Single-Crystalline Eu2O2[SO4]
  61. K3Er7S12 und Rb3Er7S12: Zwei ternäre Erbium(III)-sulfide mit KanalstrukturProfessor Welf Bronger zum 70. Geburtstag gewidmet
  62. Eu5F[SiO4]3 und Yb5S[SiO4]3: Gemischtvalente Lanthanoid-Silicate mit Apatit-StrukturProfessor Welf Bronger zum 70. Geburtstag gewidmet
  63. Thiosilicate der Selten-Erd-Elemente: I. Die isotypen Verbindungen KCe[SiS4] und Eu2[SiS4]
  64. Ho2O[SiO4] und Ho2S[SiO4]: Zwei Chalkogenid-Derivate von Holmium(III)-ortho- Oxosilicat
  65. K2NdP2S7: A Mixed-Valent Neodymium(III) Thiophosphate According to K4Nd2[PS4]2[P2S6] with Discrete [PS4]3-and [S3P-PS3]4-Anions
  66. Crystal structure of tetracerium(III) trisulfide heptaoxodisilicate(IV), Ce4S3[Si2O7]
  67. Zwei Chloridsilicate des Yttriums: Y3Cl[SiO4]2 und Y6Cl10[Si4O12]
  68. A Fully Characterized Complex Ion with Unreduced TCNQ as Fourfold Bridging Ligand: [(μ4-TCNQ){fac-Re(CO)3(bpy)}4]4+
  69. Zur Dimorphie von Nd3Cl[SiO4]2