All Stories

  1. The power of lanthanides: same composition, but different lanthanides leading to different interesting materials properties, from magnetocalorics to molecular magnets and phosphors
  2. Phosphonium Bis(oxalato)borate Dicationic Ionic Liquids: A Platform for Halogen-Free Functional Fluids
  3. Crystallographic Snapshots of Pre- and Post-Lanthanide Halide Hydrolysis─Reaction Products Captured by the 4-Amino-1,2,4-triazole Ligand
  4. Materials Informatics Tools to Analyze Crystal Structures: Crystal Structure of the Novel Ternary Indide ErCo2In
  5. Materials Informatics Tools to Analyze Crystal Structures: Crystal Structure of the Novel Ternary Indide ErCo2In
  6. Materials Informatics Tools to Analyze Crystal Structures: Crystal Structure of the Novel Ternary Indide ErCo2In, the “Perovskite” of Intermetallics
  7. Ternary Gallide Hf7Pd7Ga3: Crystal and Electronic Structures
  8. How to Engineer the Best Possible Ionic Liquid?─Scrutinizing Structure–Property Relationships in Ammonium Ionic Liquids for Anti-Crystal Engineering
  9. Advancing green chemistry performance assessment: the Estée Lauder Companies’ continuing journey towards meaningful transparency
  10. Colour tuneable luminescent organic–inorganic hybrid materials based on lanthanide-doped ionic liquid polymers
  11. Crystal chemistry and luminescence properties of tetrabutylphosphonium tetrakis(8-quinolinato)lanthanidate [P4444][Ln(Q)4]·2X (X = H2O and (CH3)2CO)
  12. Ternary gallide Zr7Pd7–Ga3+ (0 ≤ x ≤ 1.8): Synthesis, crystal and electronic structures
  13. La–Ni–Si: A Gold Mine with a Diamond
  14. Announcement 2023: John C. Warner Early Career Researcher Prize 2023 Winner
  15. Unusual superconductivity in crystallographically disordered RT2−xSn2 compounds
  16. The pseudo-ternary phases Eu0.28Yb0.72MnPt and YbCd0.13Mn0.87Pt as TiNiSi type derivatives of the elusive or non-existent “YbMnPt”
  17. Stabilization of the elusive or non-existent “YbMnPt” phase by chemical heterogeneity: The pseudo-ternary phases Eu0.28Yb0.72MnPt and YbCd0.13Mn0.87Pt with TiNiSi type structure
  18. Deciphering the Atomic Size Factor in Quasi-ternary Zintl phases RAg0.5Al0.5Ge (R = Ca, Eu) with the TiNiSi type Structure
  19. Anion Architecture Controls Structure and Electroresponsivity of Anhalogenous Ionic Liquids in a Sustainable Fluid
  20. Manipulation of Luminescence via Surface Site Occupation in Ln3+-Doped Nanocrystals
  21. Making a Hedgehog Spin-Vortex State Possible: Geometric Frustration on a Square Lattice
  22. Intermetallics of 4:4:1 and 3:3:1 series in La–(Co,Ni)–M (M = Bi, Pb, Te, Sb, Sn and Ga, Al) systems and their properties
  23. Synthesis and Exploration of Barium Stannate–Zirconate BaSn1–xZrxO3 (0 ≤ X ≤ 1) Solid Solutions as Photocatalysts
  24. The crystal and electronic structure of RE23Co6.7In20.3 (RE = Gd–Tm, Lu): A new structure type based on intergrowth of AlB2- and CsCl-type related slabs
  25. 2022 John C. Warner early career researcher prize
  26. Small-Angle Neutron Scattering Insights into 2-Ethylhexyl Laurate: A Remarkable Bioester
  27. Magnetic structures and properties of new 1:1 MoB-type RCo0.6Ni0.4 and RCo0.5Ni0.5 (R = Tb, Dy, Ho): Structural transition induced by magnetic ordering
  28. Exploring the Role of Neutral 4-Amino-1,2,4-triazole in the Formation of Hexanuclear f-Element Hydrolysis Products
  29. Crystal and electronic structures of the new ternary gallide Zr12Pd40−Ga31+ (x = 0–1.5, y = 0–0.5)
  30. Trapping an Unexpected/Unprecedented Hexanuclear Ce(III) Hydrolysis Product with Neutral 4‐Amino‐1,2,4‐triazole
  31. Honeycomb Constructs in the La–Ni Intermetallics: Controlling Dimensionality via p-Element Substitution
  32. Molecular Architecture Effects on Bulk Nanostructure in Bis(Orthoborate) Ionic Liquids
  33. Solubility limits, magnetic and magnetocaloric properties of MoB-type GdCoxNi1−x (0.47 ≤ x ≤ 0.72)
  34. Lan(n+1)+xNin(n+5)+ySi(n+1)(n+2)–z: A Symmetric Mirror Homologous Series in the La–Ni–Si System
  35. The Prolific Ternary System Pt/Sn/Nd: Insertion of Pt into the Structures of Sn/Nd Intermetallics Yields Structural Complexity and Wealth
  36. Optimization of Chemical Bonding through Defect Formation and Ordering─The Case of Mg7Pt4Ge4
  37. Broadband White‐Light‐Emitting Electrochemical Cells
  38. Isolation of anhydrous tetrabutylphosphonium lanthanide hexa- and penta-nitrates from ionic liquids
  39. The 8‐Hydroxyquinolinium Cation as a Lead Structure for Efficient Color‐Tunable Ionic Small Molecule Emitting Materials
  40. Fluorescent carbon dots from birch leaves for sustainable electroluminescent devices
  41. Enhanced stability and complex phase behaviour of organic–inorganic green-emitting ionic manganese halides
  42. Investigation of the role of hydrogen bonding in ionic liquid-like salts with both N- and S-soft donors
  43. Crystal and electronic structures of a new hexagonal silicide Sc38Co144Si97
  44. The missing link between zeolites and polyoxometalates
  45. Insights into Ionic Liquid Electrolyte and Redox Mediator Design for Dye Sensitized Solar Cells
  46. Phonon-Mediated Nonradiative Relaxation in Ln3+-Doped Luminescent Nanocrystals
  47. Frustration and 120° Magnetic Ordering in the Layered Triangular Antiferromagnets AFe(PO3F)2 (A = K, (NH4)2Cl, NH4, Rb, and Cs)
  48. Flux Growth, Crystal Structures, and Electronic Properties of the Ternary Intermetallic Compounds Ca3Pd4Bi8 and Ca3Pt4Bi8
  49. From a Dense Structure to Open Frameworks: The Structural Plethora of Alkali Metal Iron Fluorophosphates
  50. Magnetic phase diagram of the solid solution LaMn2(Ge1−xSix)2 (0 ≤ x ≤ 1) unraveled by powder neutron diffraction
  51. Accessing Lanthanide Tricyanomethanide Coordination Polymers Using Ionic Liquids
  52. Lanthanide-based complexes as efficient physiological temperature sensors
  53. Editorial
  54. CO2 capture from ambient air via crystallization with tetraalkylammonium hydroxides
  55. Four ternary silicides in the La–Ni–Si system: from polyanionic layers to frameworks
  56. Ionic liquids and deep eutectics as a transformative platform for the synthesis of nanomaterials
  57. Nano-crystalline Nd3+-doped LuPO4 optical materials obtained by ionic liquid assisted synthesis route
  58. Shape Preserving Single Crystal to Amorphous to Single Crystal Polymorphic Transformation Is Possible
  59. Magnetic, Photo- and Electroluminescent: Multifunctional Ionic Tb Complexes
  60. First-order antiferromagnetic transitions of SrMn 2 P 2 and CaMn 2 P 2 single crystals containing corrugated-hon...
  61. Crystal and Magnetic Structures of the Ternary Ho2Ni0.8Si1.2 and Ho2Ni0.8Ge1.2 Compounds: An Example of Intermetallics Crystallizing with the Zr2Ni1–xP Proto...
  62. Crystal and electronic structures of the new ternary silicide Sc12Co41.8Si30.2
  63. New intermetallics R1+xZr1−xNi (R = Er–Tm, x ~ 0.5) with the TiNiSi type of structure
  64. Suppression of antiferromagnetic order and strong ferromagnetic spin fluctuations in Ca(Co
  65. Ready Access to Anhydrous Anionic Lanthanide Acetates by Using Imidazolium Acetate Ionic Liquids as the Reaction Medium
  66. Overlooked Binary Compounds Uncovered in the Reinspection of the La–Au System: Synthesis, Crystal Structures, and Electronic Properties of La7Au3, La3Au2, and La3Au4
  67. Editorial
  68. Ionic Liquid-Based Dye-Sensitized Solar Cells—Insights into Electrolyte and Redox Mediator Design
  69. Investigation in the ternary Ta-Ni-P system: Solid state phase equilibria at T=1070 K, crystal and electronic structures of new ternary phosphides
  70. Anhydrous vs Hydrated f-Element Acetate Polymers Dictated by the Stoichiometry of Protic Acidic/Basic Azole Mixtures
  71. Structural analysis of mono-substituted N-butyl-pyridinium salts: in search of ionic liquids
  72. Sandwiched Kagomé Lattices in a Coordination Polymer Based on Mixed-Valent Uranium
  73. Editorial
  74. Synthesis of luminescent semiconductor nanoparticles in ionic liquids –the importance of the ionic liquid in the formation of quantum dots
  75. Uncovering new transition metal Zintl phases by cation substitution: the crystal chemistry of Ca3CuGe3 and Ca2+nMnxAg2−x+zGe2+n−z (n = 3, 4)
  76. Developing design tools for introducing and tuning structural order in ionic liquids
  77. Short-range ferromagnetic order due to Ir substitutions in single-crystalline Ba(Co1− x Ir x )2As2 (0 ⩽ x ⩽...
  78. The Power of Ionic Liquids: Crystal Facet Engineering of SrTiO3 Nanoparticles for Tailored Photocatalytic Applications
  79. Synthesis and Crystal Structure of the Short LnSb2O4Br Series (Ln = Eu–Tb) and Luminescence Properties of Eu3+-Doped Samples
  80. A soft chemistry approach to the synthesis of single crystalline and highly pure (NH4)CoF3 for optical and magnetic investigations
  81. Fluorinated Cationic Iridium(III) Complex Yielding an Exceptional, Efficient, and Long-Lived Red-Light-Emitting Electrochemical Cell
  82. Magnetic phase transitions in Eu( Co1−x
  83. Elucidating structure–property relationships in imidazolium-based halide ionic liquids: crystal structures and thermal behavior
  84. Crystallographic evidence of Watson–Crick connectivity in the base pair of anionic adenine with thymine
  85. Binary Intermetallics in the 70 atom % R Region of Two R–Pd Systems (R = Tb and Er): Hidden, Obscured, or Nonexistent?
  86. Ferromagnetic cluster-glass phase in Ca(Co1−x
  87. Efficient and Long Lived Green Light‐Emitting Electrochemical Cells
  88. Ternary Polar Intermetallics within the Pt/Sn/R Systems (R = La–Sm): Stannides or Platinides?
  89. Forcing Dicyanamide Coordination to f-Elements by Dissolution in Dicyanamide-Based Ionic Liquids
  90. Metamagnetic transition, magnetocaloric effect and electronic structure of the rare-earth anti-perovskite SnOEu3
  91. Paramagnetic iron-containing ionic liquid crystals
  92. Dehydration of UO2Cl2·3H2O and Nd(NO3)3·6H2O with a Soft Donor Ligand and Comparison of Their Interactions through X-ray Diffraction and Theoretical Investigation
  93. Metallic alloys at the edge of complexity: structural aspects,chemical bonding and physical properties
  94. Mechanochemical synthesis, luminescent and magnetic properties of lanthanide benzene-1,4-dicarboxylate coordination polymers (Ln0.5Gd0.5)2 (1,4-BDC)3(H2O)4; Ln = Sm, Eu, Tb
  95. A fivefold UO22+ node is a path to dodecagonal quasicrystal approximants in coordination polymers
  96. Rationally designed rare earth separation by selective oxalate solubilization
  97. Benchtop access to anhydrous actinide N-donor coordination complexes using ionic liquids
  98. Structural Consequences of Halogen Bonding in Dialkylimidazolium: A New Design Strategy for Ionic Liquids Illustrated with the I2 Cocrystal and Acetonitrile Solvate of 1,3-Dimethylimidazolium Iodide
  99. Synthesis of Anhydrous Acetates for the Components of Nuclear Fuel Recycling in Dialkylimidazolium Acetate Ionic Liquids
  100. New cation-disordered quaternary selenides Tl2Ga2 TtSe6 (Tt=Ge, Sn)
  101. Sustainable Urban Mining of Critical Elements from Magnet and Electronic Wastes
  102. Photoisomerization and Mesophase Formation in Azo-Ionic Liquids
  103. Stability, Crystal Chemistry, and Magnetism of U2+xNi21–xB6 and Nb3–yNi20+yB6 and the Role of Uranium in the Formation of the Quaternary U2–z
  104. Non-Fermi-liquid types of behavior associated with a magnetic quantum critical point in Sr(Co1−xNix)2As2 single crystals
  105. Helical antiferromagnetic ordering in EuNi1.95As2
  106. Ionothermal Synthesis, Structures, and Magnetism of Three New Open Framework Iron Halide-Phosphates
  107. Highly Luminescent Ionic Liquids Based on Complex Lanthanide Saccharinates
  108. Alternative to the Popular Imidazolium Ionic Liquids: 1,2,4-Triazolium Ionic Liquids with Enhanced Thermal and Chemical Stability
  109. Ionothermal Synthesis Enables Access to 3D Open Framework Manganese Phosphates Containing Extra-Large 18-Ring Channels
  110. Structures, properties, and potential applications of rare earth-noble metal tellurides
  111. Active-Transition-Metal Tellurides: Through Crystal Structures to Physical Properties
  112. Luminescence properties of a family of lanthanide metal-organic frameworks
  113. Upconversion luminescence in sub-10 nm β-NaGdF4:Yb3+,Er3+ nanoparticles: an improved synthesis in anhydrous ionic liquids
  114. Anomalous effects of Sc substitution and processing on magnetism and structure of (Gd1-xScx)5Ge4
  115. Sodium Salicylate: An In-Depth Thermal and Photophysical Study
  116. An Obscured or Nonexistent Binary Intermetallic, Co7Pr17, Its Existent Neighbor Co2Pr5, and Two New Ternaries in the System Co/Sn/Pr, CoSn3Pr1–x, and Co2–xSn7Pr3
  117. Tb3Pd2, Er3Pd2 and Er6Co5–x : structural variations and bonding in rare-earth-richer binary intermetallics
  118. From the Nonexistent Polar Intermetallic Pt3Pr4 via Pt2–xPr3 to Pt/Sn/Pr Ternaries
  119. Synthesis, structural characterization and luminescence properties of 1-carboxymethyl-3-ethylimidazolium chloride
  120. Rare earth metal-containing ionic liquids
  121. Enhanced moments of Eu in single crystals of the metallic helical antiferromagnetEuCo2−y
  122. R14(Au, M)51 (R = Y, La–Nd, Sm–Tb, Ho, Er, Yb, Lu; M = Al, Ga, Ge, In, Sn, Sb, Bi): Stability Ranges and Site Preference in the Gd14Ag51 Structure Type
  123. Antiferromagnetism in semiconductingSrMn2Sb2and
  124. Luminescence and energy transfer in β-NaGdF4:Eu3+,Er3+ nanocrystalline samples from a room temperature synthesis
  125. Bringing order to large-scale disordered complex metal alloys: Gd2Au15−xSbxand BaAuxGa12−x
  126. Controlling magnetism via transition metal exchange in the series of intermetallics Eu(T1,T2)5In (T = Cu, Ag, Au)
  127. Luminescence properties of mechanochemically synthesized lanthanide containing MIL-78 MOFs
  128. Anomalous Composition-Induced Crossover in the Magnetic Properties of the Itinerant-Electron AntiferromagnetCa1−
  129. Supramolecularly Caged Green-Emitting Ionic Ir(III)-Based Complex with Fluorinated C^N Ligands and Its Application in Light-Emitting Electrochemical Cells
  130. Gold Polar Intermetallics: Structural Versatility through Exclusive Bonding Motifs
  131. Ionic-Liquid-Assisted Microwave Synthesis of Solid Solutions of Sr1−x Ba x SnO3 Perovskite for Photocatalytic Applications
  132. Recent trends in binary and ternary rare-earth fluoride nanophosphors: How structural and physical properties influence optical behavior
  133. Ionic liquid supported synthesis of nano-sized rare earth doped phosphates
  134. Room temperature synthesis of β-NaGdF 4 : RE 3+ (RE= Eu, Er) nanocrystallites and their luminescence
  135. Divalent Europium doped CaF 2 and BaF 2 nanocrystals from ionic liquids
  136. Open-Framework Manganese(II) and Cobalt(II) Borophosphates with Helical Chains: Structures, Magnetic, and Luminescent Properties
  137. New perspectives on yttrium-gold alloys
  138. Ionic-Liquid-Assisted Microwave Synthesis of Solid Solutions of Sr1−x Ba x SnO3 Perovskite for Photocatalytic Applications
  139. Microwave-Assisted Synthesis of Perovskite SrSnO3 Nanocrystals in Ionic Liquids for Photocatalytic Applications
  140. R3Au9Pn (R = Y, Gd–Tm; Pn = Sb, Bi): A Link between Cu10Sn3 and Gd14Ag51
  141. Scrutinizing Design Principles toward Efficient, Long-Term Stable Green Light-Emitting Electrochemical Cells
  142. Magnetocaloric Behavior in Ternary Europium Indides EuT5In: Probing the Design Capability of First-Principles-Based Methods on the Multifaceted Magnetic Materials
  143. Layered Structures and Disordered Polyanionic Nets in the Cation-Poor Polar Intermetallics CsAu1.4Ga2.8and CsAu2Ga2.6
  144. Design of LaPO4:Nd3+ materials by using ionic liquids
  145. Size of the rare-earth ions: a key factor in phase tuning and morphology control of binary and ternary rare-earth fluoride materials
  146. Breaking the paradigm: record quindecim charged magnetic ionic liquids
  147. Improving the zT value of thermoelectrics by nanostructuring: tuning the nanoparticle morphology of Sb2Te3by using ionic liquids
  148. Long term stable deep red light-emitting electrochemical cells based on an emissive, rigid cationic Ir(iii) complex
  149. EuNi5InH1.5−x (x = 0–1.5): hydrogen induced structural and magnetic transitions
  150. Green-yellow emitting hybrid light emitting electrochemical cell
  151. ChemInform Abstract: The Missing Hydrate AlF3·6H2O = [Al(H2O)6]F3: Ionothermal Synthesis, Crystal Structure and Characterization of Aluminum Fluoride Hexahydrate.
  152. The missing hydrate AlF3·6H2O [Al(H2O)6]F3: Ionothermal synthesis, crystal structure and characterization of aluminum fluoride hexahydrate
  153. Cover Picture: Cesium Platinide Hydride 4Cs2 Pt⋅CsH: An Intermetallic Double Salt Featuring Metal Anions (Angew. Chem. Int. Ed. 47/2016)
  154. Titelbild: Caesiumplatinidhydrid, 4 Cs2 Pt⋅CsH: ein intermetallisches Doppelsalz mit Metall-Anionen (Angew. Chem. 47/2016)
  155. Caesiumplatinidhydrid, 4 Cs2 Pt⋅CsH: ein intermetallisches Doppelsalz mit Metall-Anionen
  156. Cesium Platinide Hydride 4Cs2 Pt⋅CsH: An Intermetallic Double Salt Featuring Metal Anions
  157. Gold in the Layered Structures of R3Au7Sn3: From Relativity to Versatility
  158. New R3Pd5Compounds (R = Sc, Y, Gd–Lu): Formation and Stability, Crystal Structure, and Antiferromagnetism
  159. ChemInform Abstract: New Developments in the Synthesis, Structure, and Applications of Borophosphates and Metalloborophosphates
  160. New Developments in the Synthesis, Structure, and Applications of Borophosphates and Metalloborophosphates
  161. Ionic liquid assisted microwave synthesis route towards color-tunable luminescence of lanthanide- doped BiPO 4
  162. ChemInform Abstract: Cation-Poor Complex Metallic Alloys in Ba(Eu)-Au-Al(Ga) Systems: Identifying the Keys that Control Structural Arrangements and Atom Distributions at the Atomic Level.
  163. Coordination Chemistry in Rare Earth Containing Ionic Liquids
  164. Phase selective synthesis of quantum cutting nanophosphors and the observation of a spontaneous room temperature phase transition
  165. Controllable synthesis of nanoscale YPO4:Eu3+ in ionic liquid
  166. Sonochemical synthesis of highly luminescent Ln 2 O 3 :Eu 3+ (Y, La, Gd) nanocrystals
  167. Gd3Ni2 and Gd3CoxNi2−x: magnetism and unexpected Co/Ni crystallographic ordering
  168. Nanomaterials for Energy Conversion-The Synthesis of Highly Crystalline Ytterbium(III) Fluoride Nanoparticles From Ionic Liquids
  169. Mesophase Stabilization in Ionic Liquid Crystals through Pairing Equally Shaped Mesogenic Cations and Anions
  170. Cation-Poor Complex Metallic Alloys in Ba(Eu)–Au–Al(Ga) Systems: Identifying the Keys that Control Structural Arrangements and Atom Distributions at the Atomic Level
  171. Low-temperature route to metal titanate perovskite nanoparticles for photocatalytic applications
  172. ChemInform Abstract: From the Ternary Eu(Au/In)2and EuAu4(Au/In)2with Remarkable Au/In Distributions to a New Structure Type: The Gold-Rich Eu5Au16(Au/In)6Structure.
  173. Silica ionogels synthesized with imidazolium based ionic liquids in presence of supercritical CO2
  174. From the Ternary Eu(Au/In)2and EuAu4(Au/In)2with Remarkable Au/In Distributions to a New Structure Type: The Gold-Rich Eu5Au16(Au/In)6Structure
  175. Azobenzene-Based Organic Salts with Ionic Liquid and Liquid Crystalline Properties
  176. ChemInform Abstract: Crystal Structure and Bonding in BaAu5Ga2and AeAu4+xGa3-x(Ae: Ba and Eu): Hexagonal Diamond-Type Au Frameworks and Remarkable Cation/Anion Partitioning in the Ae-Au-Ga Systems.
  177. Influence of the Counteranion on the Ability of 1-Dodecyl-3-methyltriazolium Ionic Liquids to Form Mesophases
  178. Corbett Special Issue Editorial
  179. Crystal Structure and Bonding in BaAu5Ga2and AeAu4+xGa3–x(Ae = Ba and Eu): Hexagonal Diamond-Type Au Frameworks and Remarkable Cation/Anion Partitioning in the Ae–Au–Ga Systems
  180. A novel approach to prepare optically active ion doped luminescent materials via electron beam evaporation into ionic liquids
  181. Energy efficient microwave synthesis of mesoporous Ce0.5M0.5O2 (Ti, Zr, Hf) nanoparticles for low temperature CO oxidation in an ionic liquid – a comparative study
  182. Triazolium based ionic liquid crystals: effect of asymmetric substitution
  183. Gold-rich R3Au7Sn3: establishing the interdependence between electronic features and physical properties
  184. Record figure of merit values of highly stoichiometric Sb2Te3 porous bulk synthesized from tailor-made molecular precursors in ionic liquids
  185. Ionic Liquid-Assisted Sonochemical Preparation of CeO2 Nanoparticles for CO Oxidation
  186. Influence of scCO2, Ultrasound, and Quaternary Ammonium Salt on Gelation Time and Structural Characteristics of Silica
  187. Highly Luminescent Salts Containing Well-Shielded Lanthanide-Centered Complex Anions and Bulky Imidazolium Countercations
  188. Ionothermal synthesis of open-framework metal phosphates with a Kagomé lattice network exhibiting canted anti-ferromagnetism
  189. New triazolium based ionic liquid crystals
  190. Addendum: Iod-Iod-Bindungen machen Tetra(diiod)chlorid, [Cl(I2)4]−, planar
  191. Corrigendum: Iodine-Iodine Bonding makes Tetra(diiodine)chloride, [Cl(I2)4]−, Planar
  192. ChemInform Abstract: Ionothermal Synthesis, Crystal Structure, and Magnetic Study of Co2PO4OH Isostructural with Caminite.
  193. A Roadmap to Uranium Ionic Liquids: Anti-Crystal Engineering
  194. A Systematic Study on the Mesomorphic Behavior of Asymmetrical 1-Alkyl-3-dodecylimidazolium Bromides
  195. Eu3+ as a dual probe for the determination of IL anion donor power: A combined luminescence spectroscopic and electrochemical approach
  196. (1-Butyl-4-methyl-pyridinium)[Cu(SCN)2]: A Coordination Polymer and Ionic Liquid
  197. Ionothermal Synthesis, Crystal Structure, and Magnetic Study of Co2PO4OH Isostructural with Caminite
  198. Highly Luminescent and Color-Tunable Salicylate Ionic Liquids
  199. ChemInform Abstract: Iodine-Iodine Bonding Makes Tetra(diiodine)chloride, [Cl(I2)4]-, Planar.
  200. Small nickel nanoparticle arrays from long chain imidazolium ionic liquids
  201. Reaching quantum yields ≫100% in nanomaterials
  202. Bis-cationic ionic liquid crystals
  203. Quantum cutting in nanoparticles producing two green photons
  204. Charge compensation in RE3+ (RE = Eu, Gd) and M+ (M = Li, Na, K) co-doped alkaline earth nanofluorides obtained by microwave reaction with reactive ionic liquids leading to improved optical properties
  205. Solution-Based Synthesis of GeTe Octahedra at Low Temperature
  206. Phosphonium Chloromercurate Room Temperature Ionic Liquids of Variable Composition
  207. High-Throughput Fabrication of Au-Cu Nanoparticle Libraries by Combinatorial Sputtering in Ionic Liquids
  208. John D. Corbett (1926-2013)
  209. John D. Corbett (1926-2013)
  210. Ionic Liquid-Assisted Route to Nanocrystalline Single-Phase Phosphors for White Light-Emitting Diodes
  211. Iod-Iod-Bindungen machen Tetra(diiod)chlorid, [Cl(I2)4]−, planar
  212. Iodine-Iodine Bonding makes Tetra(diiodine)chloride, [Cl(I2)4]−, Planar
  213. On the Mesophase Formation of 1,3-Dialkylimidazolium Ionic Liquids
  214. Synthesis of bimetallic nanoparticles in ionic liquids: Chemical routes vs physical vapor deposition
  215. White-Light-Emitting Single Phosphors via Triply Doped LaF3Nanoparticles
  216. Ionic liquids for the synthesis of metal nanoparticles
  217. One-Pot Synthesis of Luminescent Polymer-Nanoparticle Composites from Task-Specific Ionic Liquids
  218. Mild yet phase-selective preparation of TiO2 nanoparticles from ionic liquids – a critical study
  219. Yttrium(iii) oxomolybdates(vi) as potential host materials for luminescence applications: an investigation of Eu3+-doped Y2[MoO4]3 and Y2[MoO4]2[Mo2O7]
  220. Phase and morphology selective interface-assisted synthesis of highly luminescent Ln3+-doped NaGdF4 nanorods
  221. Interface-assisted ionothermal synthesis, phase tuning, surface modification and bioapplication of Ln3+-doped NaGdF4nanocrystals
  222. ChemInform Abstract: The Prolific {ZR6}X12R and {ZR6}X10Structure Types with Isolated Endohedrally Stabilized (Z) Rare-Earth Metal (R) Cluster Halide (X) Complexes
  223. The Prolific {ZR6}X12Rand {ZR6}X10Structure Types with Isolated Endohedrally Stabilized (Z) Rare-Earth Metal (R) Cluster Halide (X) Complexes
  224. Lanthanoid‐Based Ionic Liquids Incorporating the Dicyanonitrosomethanide Anion
  225. Synthesis of Anionic Spin Crossover Complexes with Schiff Base like Ligands
  226. Ionothermal Synthesis of the First Luminescent Open-Framework Manganese Borophosphate with Switchable Magnetic Properties
  227. Lanthanide Coordination Polymers with Tetrafluoroterephthalate as a Bridging Ligand: Thermal and Optical Properties
  228. Betaine Chloride-Betaine Tetrachloridoferrate(III)—An Ionic Liquid Related Crystal Structure Governed by the Pearson Concept
  229. Mercuric Ionic Liquids: [Cnmim][HgX3], Wheren= 3, 4 and X = Cl, Br
  230. Melting point suppression in new lanthanoid(iii) ionic liquids by trapping of kinetic polymorphs: an in situsynchrotron powder diffraction study
  231. Phosphate protected fluoride nano-phosphors
  232. Ultrasound-assisted synthesis of mesoporous β-Ni(OH)2 and NiO nano-sheets using ionic liquids
  233. Sonochemical Synthesis of 0D, 1D, and 2D Zinc Oxide Nanostructures in Ionic Liquids and Their Photocatalytic Activity
  234. Highly doped alkaline earth nanofluorides synthesized from ionic liquids
  235. ChemInform Abstract: {Os5Lu20}I24, the First Extended Cluster Complex of Lutetium with Eight-Coordinate Endohedral Osmium Atoms in Two Different Environments.
  236. (B15c5)BiI3(I2): Molecular Benzo-15-Crown-5―BiI3 Complexes Bridged by Iodine Molecules to Chains
  237. Karl-Scheel-Preis: E. F. Aziz / Tetrahedron Awards: B. G. Davis und Z.-J. Shi / Priestley-Medaille: R. S. Langer / Humboldt-Forschungsstipendium: A.-V. Mudring
  238. Karl Scheel Prize: E. F. Aziz / Tetrahedron Awards: B. G. Davis and Z.-J. Shi / Priestley Medal: R. S. Langer / Humboldt Research Fellowship: A.-V. Mudring
  239. Atomic Vapor Deposition Approach to In2O3 Thin Films
  240. Crystalline and Liquid Crystalline Organic-Inorganic Hybrid Salts with Cation-Sensitized Hexanuclear Molybdenum Cluster Complex Anion Luminescence
  241. {Os5Lu20}I24, the First Extended Cluster Complex of Lutetium with Eight-Coordinate Endohedral Osmium Atoms in Two Different Environments
  242. Switchable Green and White Luminescence in Terbium-Based Ionic Liquid Crystals
  243. In-Situ Crystal Growth and Properties of the Magnetic Ionic Liquid [C2mim][FeCl4]
  244. Linear Trimeric Hafnium Clusters in Hf0.86(1)I3
  245. Ionic Liquids as Crystallization Media: Weakly-Coordinating Anions Do Coordinate in1∞[Eu(OTf)3(CH3CN)3]
  246. Ionic Liquid-based Synthesis-A Low-Temperature Route to Nanophosphates
  247. A New Open-framework Iron Borophosphate from Ionic Liquids: KFe[BP2O8(OH)]
  248. ChemInform Abstract: Optical Spectroscopy and Ionic Liquids
  249. Europium(III) Fluoride Nanoparticles from Ionic Liquids: Structural, Morphological, and Luminescent Properties
  250. The First Lanthanide Telluride-Bromide: La3Te4Br, a Valence Compound
  251. Stability and growth behavior of transition metal nanoparticles in ionic liquids prepared by thermal evaporation: how stable are they really?
  252. Structures, electronic properties and solid state luminescence of Cu(i) iodide complexes with 2,9-dimethyl-1,10-phenanthroline and aliphatic aminomethylphosphines or triphenylphosphine
  253. Efficient quantum cutting in hexagonal NaGdF4:Eu3+ nanorods
  254. Nanofluorides for Environmentally Benign Lighting and Energy Conversion in Solar Cells
  255. ChemInform Abstract: The Last of the Five: The Elusive “Tantalum(III) Bromide”, a Perovskite-Related Salt, [{Ta6}Br12]Br3 [TaBr6]0.86.
  256. ChemInform Abstract: Solidification of Ionic Liquids: Theory and Techniques
  257. Structural and Electrochemical Properties of YbIII in Various Ionic Liquids
  258. The Last of the Five: the Elusive “Tantalum(III) Bromide”, a Perovskite-Related Salt, [{Ta6}Br12]Br3[TaBr6]0.86 (Eur. J. Inorg. Chem. 26/2010)
  259. ChemInform Abstract: Eight-Coordinate Endohedral Rhenium, Osmium and Iridium Atoms in Rare-Earth Halide Cluster Complexes.
  260. ChemInform Abstract: Ionic Liquid for Lanthanide and Actinide Chemistry
  261. ChemInform Abstract: Chains of Face-Sharing {ZPr6} Octahedra with Alternating Endohedral Iridium Atoms and Chloride Ions in {(Ir,Cl)Pr6}Cl10.
  262. The Last of the Five: the Elusive “Tantalum(III) Bromide”, a Perovskite-Related Salt, [{Ta6}Br12]Br3[TaBr6]0.86
  263. ChemInform Abstract: Sodium Trinitratouranylate(VI) Na[UO2(NO3)3].
  264. Chains of Face-Sharing {ZPr6} Octahedra with Alternating Endohedral Iridium Atoms and Chloride Ions in {(Ir,Cl)Pr6}Cl10
  265. Ionic Liquids for Lanthanide and Actinide Chemistry A Bismuth-Stabilized Metal-Rich Telluride Lu9Bi≈1.0Te≈1.0 - Synthesis and Characterization Monazite and Zircon Type LaVO4:Eu Nanocrystals - Synthesis, Luminescent Properties, and Spectroscopic Identifica
  266. Ionic Liquids for Lanthanide and Actinide Chemistry
  267. ChemInform Abstract: Rb8AlO4Au3  Rb5 AlO4×3RbAu - An Aluminate Auride.
  268. ChemInform Abstract: Syntheses and Crystal Structures of Rb4Br2O and Rb6Br4O.
  269. ChemInform Abstract: Cesiumauride Ammonia (1/1), CsAu×NH3: A Crystalline Analogue to Alkali Metals Dissolved in Ammonia?
  270. Lanthanide Containing Ionic Liquid Crystals: EuBr2, SmBr3, TbBr3 and DyBr3 in C12mimBr 
  271. Eight-Coordinate Endohedral Rhenium, Osmium and Iridium Atoms in Rare-Earth Halide Cluster Complexes
  272. Synthesis, Structure, and Physico-optical Properties of Manganate(II)-Based Ionic Liquids
  273. Sodium Trinitratouranylate(VI) Na[UO2(NO3)3] 
  274. A Luminescent Ionic Liquid Crystal: [C12mim]4[EuBr6]Br
  275. Sonochemical preparation of TiO2 nanoparticles in the ionic liquid 1-(3-hydroxypropyl)-3-methylimidazolium-bis(trifluoromethylsulfonyl)amide
  276. Stabilisatorfreie langzeitstabile Metall-Nanopartikel und Metall- Metalloxid-Nanokomposite durch physikalische Gasphasenabscheidung
  277. Stabilizer-Free Metal Nanoparticles and Metal-Metal Oxide Nanocomposites with Long-Term Stability Prepared by Physical Vapor Deposition into Ionic Liquids
  278. Facile preparation of quantum cutting GdF3 : Eu3+nanoparticles from ionic liquids
  279. Easy access to ultra long-time stable, luminescent europium(ii) fluoride nanoparticles in ionic liquids
  280. Optical basicity of ionic liquids
  281. [Ni(tmen)(acac)][B(Ph)4] a probe for the anion basicity of ionic liquids
  282. On the dissolution of non-metallic solid elements (sulfur, selenium, tellurium and phosphorus) in ionic liquids
  283. Solidification of Ionic Liquids: Theory and Techniques
  284. Electronic and magnetic structure of (CrCl3)3
  285. ChemInform Abstract: (NH4)[GaCl4] and (NH4)[InCl4] Revisited.
  286. Nanoparticle Synthesis in Ionic Liquids
  287. Luminescent Soft Material: Two New Europium-Based Ionic Liquids
  288. Structural and Thermal Behaviour of the Pyrrolidinium Based Ionic Liquid Crystals [C10mpyr]Br and [C12mpyr]Br
  289. Dysprosium-Based Ionic Liquid Crystals: Thermal, Structural, Photo- and Magnetophysical Properties
  290. (NH4)[GaCl4] and (NH4)[InCl4] Revisited
  291. ChemInform Abstract: A Systematic Study of the Crystal Structures of TlMX4(M: Al, Ga; X: Cl, Br, I).
  292. Terbium β-Diketonate Based Highly Luminescent Soft Materials
  293. Ultrasound-Assisted Synthesis of CuO Nanorods in a Neat Room-Temperature Ionic Liquid
  294. The Missing Link Crystallized from the Ionic Liquid 1-Ethyl-3-methylimidazolium Tosylate: Bis-aqua-(p-toluenesulfonato-O)-europium(III)-bis-p-toluenesulfonate Dihydrate
  295. Facile preparation of Ag/ZnO nanoparticles via photoreduction
  296. A Systematic Study on the Crystal Structures of TlMX4(M = Al, Ga; X = Cl, Br, I)
  297. ChemInform Abstract: Ionic Liquids as Versatile Media in Lanthanide Chemistry
  298. Facile ultrasound-assisted synthesis of ZnO nanorods in an ionic liquid
  299. Two Cyano-Functionalized, Cadmium-Containing Ionic Liquids
  300. Temperature-Driven Mixing-Demixing Behavior of Binary Mixtures of the Ionic Liquid Choline Bis(trifluoromethylsulfonyl)imide and Water
  301. A new class of double alkyl-substituted, liquid crystalline imidazolium ionic liquids—a unique combination of structural features, viscosity effects, and thermal properties
  302. Facile, environmentally friendly fabrication of porous silver monoliths using the ionic liquid N-(2-hydroxyethyl)ammonium formate
  303. Optical Spectroscopy and Ionic Liquids
  304. Electrodeposition of Co, Sm and Co-Sm Thin Layers
  305. ChemInform Abstract: Seven-Coordinate Ruthenium Atoms Sequestered in Praseodymium Clusters in the Chloride {RuPr3}Cl3.
  306. Pb(18-crown-6)Cl2and Hg(18-crown-6)I2: Molecular Dihalides Trapped in a Crown Ether
  307. Imidazolium based ionic liquid crystals: structure, photophysical and thermal behaviour of [Cnmim]Br·xH2O (n = 12, 14; x=0, 1)
  308. Tetrakis(acetonitrile)-dibromo-nickel(II), [Ni(CH3CN)4Br2]
  309. Europium-Based Ionic Liquids as Luminescent Soft Materials
  310. Europium-basierte ionische Flüssigkeiten als lumineszierende weiche Materialien
  311. Bei Raumtemperatur flüssige ionische Verbindungen auf Dysprosium-Basis mit starker Lumineszenz und Reaktion auf magnetische Felder
  312. Dysprosium Room-Temperature Ionic Liquids with Strong Luminescence and Response to Magnetic Fields
  313. Seven-Coordinate Ruthenium Atoms Sequestered in Praseodymium Clusters in the Chloride {RuPr3}Cl3
  314. (CrCl3)3@2[C4mim][OMe]Molecular Cluster-Type Chromium(III) Chloride Stabilized in a Salt Matrix
  315. ChemInform Abstract: Tantalum(IV) Iodide, TaI4: A Molecular Solid Consisting of Dimers of Dimers, Ta4I16.
  316. ChemInform Abstract: Indium(I) Heptachlorodigallate(III), InGa2Cl7.
  317. ChemInform Abstract: Indium(I) Tetraiodoaluminate, InAlI4.
  318. Tantalum(IV) Iodide, TaI4: A Molecular Solid Consisting of Dimers of Dimers, Ta4I16
  319. The First Homoleptic Bis(trifluoromethanesulfonyl)amide Complex of Yttrium: [bmim][Y(Tf2N)4]
  320. Indium(I) Tetraiodoaluminate, InAlI4
  321. Indium(I) Heptachlorodigallate(III), InGa2Cl7
  322. Tetrakis(acetonitrile)-dibromo-nickel(II)-di-acetonitrile, [Ni(CH3CN)4Br2]·2CH3CN
  323. Electrodeposition of Ferromagnetic Materials from Air and Water Stable Ionic Liquids
  324. Ionic Liquids with Perfluorinated Alkoxyaluminates
  325. Ionic Liquids as Versatile Media in Lanthanide Chemistry
  326. [(bmpyr)2{Zn(OC6H3(NO2)2)4}]: Influence of an Ionic Liquid on Liquid/Liquid Extraction of Metal Ions in a Biphasic System
  327. Thallium Halides — New Aspects of the Stereochemical Activity of Electron Lone Pairs of Heavier Main-Group Elements
  328. Synthesis, Structure, and Electronic and Physical Properties of Tl2TeS3, the First Characterized Thallium(I) Thiotellurate(IV).
  329. Phase Transition in Tl2TeO3: Influence and Origin of the Thallium Lone Pair Distortion.
  330. Thallium Halides – New Aspects of the Stereochemical Activity of Electron Lone Pairs of Heavier Main-Group Elements
  331. Synthesis, Structure, and Electronic and Physical Properties of Tl2TeS3, the First Characterized Thallium(I) Thiotellurate(IV)
  332. Phase Transition in Tl2TeO3:  Influence and Origin of the Thallium Lone Pair Distortion
  333. Cluster-Type Basic Lanthanide Iodides [Ln6(μ6-O)(μ3-OH)8 (H2O)24]I8(H2O)8 (Ln: Nd, Eu, Tb, Dy).
  334. Solvent-Solute Interactions in Ionic Liquids
  335. Ionic Liquids with Weakly Coordinating Anions
  336. Ionic Liquid Crystals
  337. The Octanuclear Europium Cluster [bmpyr]6[Eu8(μ4-O)(μ3-OH)12(μ2-OTf)14 (μ1-Tf)2](HOTf)1.5 Obtained from the Ionic Liquid [bmpyr][OTf]
  338. New Thallium Sulfotellurites
  339. Rare-earth iodides in ionic liquids: Crystal structures of [bmpyr]4[LnI6][Tf2N] (Ln=La, Er)
  340. Strong luminescence of rare earth compounds in ionic liquids: Luminescent properties of lanthanide(III) iodides in the ionic liquid 1-dodecyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide
  341. Divalent Scandium
  342. Crystal Engineering in Ionic Liquids. The Crystal Structures of [Mppyr]3[NdI6] and [Bmpyr]4[NdI6][Tf2N]
  343. Cluster-Type Basic Lanthanide Iodides [M6(μ6-O)(μ3-OH)8(H2O)24]I8(H2O)8(M = Nd, Eu, Tb, Dy)†
  344. The Molecular Solid Sc24C10I30: A Truncated, Hollow T4 Supertetrahedron of Iodine Filled with a T3 Supertetrahedron of Scandium that Encapsulates the Adamantoid Cluster Sc4C10.
  345. Homoleptic Alkaline Earth Metal Bis(trifluoromethanesulfonyl)imide Complex Compounds Obtained from an Ionic Liquid
  346. Der molekulare Festkörper Sc24C10I30: ein unvollständiges, hohles T4-Iod-Supertetraeder, aufgefüllt mit einem T3-Scandium-Supertetraeder, das das adamantoide Sc4C10 einschließt
  347. The Molecular Solid Sc24C10I30: A Truncated, Hollow T4 Supertetrahedron of Iodine Filled with a T3 Supertetrahedron of Scandium That Encapsulates the Adamantoid Cluster Sc4C10
  348. Inorganic Supramolecular Host Architectures: [(M@18c6)2][TlI4]×2H2O, M: 0.5 Tl, (NH4,NH3), (H3O,H2O).
  349. The first homoleptic bis(trifluoromethanesulfonyl)amide complex compounds of trivalent f-elements
  350. HgCl2(Caf): Co-crystallization of Mercuric Chloride and Caffeine
  351. Anhydrous Praseodymium Salts in the Ionic Liquid [bmpyr][Tf2N]:  Structural and Optical Properties of [bmpyr]4[PrI6][Tf2N] and [bmyr]2[Pr(Tf2N)5]
  352. Inorganic Supramolecular Host Architectures:  [(M@18c6)2][TlI4]·2H2O, M = 0.5 Tl, (NH4,NH3), (H3O,H2O)
  353. Rare-Earth Iodides in Ionic Liquids:  The Crystal Structure of [SEt3]3[LnI6] (Ln = Nd, Sm)
  354. Importance of Cations in the Properties of Zintl Phases: The Electronic Structure of and Bonding in Metallic Na6TlSb4
  355. Crystal Structure of Rubidium Tetraiodothallate(III) Dihydrate, RbTlI4×2H2O.
  356. Lone Pair Effect in Thallium(I) Macrocyclic Compounds
  357. Das “nichtkoordinierende” Anion Tf2N−, koordiniert an Yb2+: ein strukturell charakterisierter Tf2N−-Komplex aus der ionischen Flüssigkeit [mppyr][Tf2N]
  358. The “Noncoordinating” Anion Tf2N− Coordinates to Yb2+: A Structurally Characterized Tf2N− Complex from the Ionic Liquid [mppyr][Tf2N]
  359. 1-Dodecyl-3-methylimidazolium bromide monohydrate
  360. Indium(I) tetrachloroaluminate
  361. N-Methyl-N-propylpyrrolidinium iodide
  362. Importance of Cations in the Properties of Zintl Phases:  The Electronic Structure of and Bonding in Metallic Na6TlSb41
  363. Crystal Structure of Rubidium Tetraiodothallate(III) Dihydrate, RbTlI4·2H2O
  364. 1-Ethyl-2,3-dimethylimidazolium bromide monohydrate
  365. Praseodymium triiodide nonahydrate
  366. Neodymium triiodide nonahydrate
  367. Ba6Pr3I19: Linear [Pr3I16] Trimers with Two Excess Electrons in a Three-Center ? Two-Electron Bond.
  368. [Nd6(?6-O)(?3-OH)8 (H2O)24]I8(H2O)12 ? The First Basic Rare Earth Iodide with an Oxygen-Centred M6X8-Cluster Core.
  369. The quadrupole moment of the 3∕2+ nuclear ground state of Au197 from electric field gradient relativistic coupled cluster and density-functional theory of small molecules and the solid state
  370. Synthesis, Crystal Structures and Properties of Na2ReO3 and of a Second Modification of Na5ReO6.
  371. Ba6Pr3I19: Linear [Pr3I16] Trimers with Two Excess Electrons in a Three-Centre - Two-Electron Bond
  372. [Nd6(?6-O)(?3-OH)8(H2O)24]I8(H2O)12 - the First Basic Rare Earth Iodide with an Oxygen-centred M6X8-Cluster Core
  373. Praseodymium Diiodide, PrI2, Revisited by Synthesis, Structure Determination and Theory.
  374. Intense near-infrared luminescence of anhydrous lanthanide(III) iodides in an imidazolium ionic liquid
  375. Synthesis, Crystal Structures and Properties of Na2ReO3 and of a Second Modification of Na5ReO6
  376. Praseodymium diiodide, PrI2, revisited by synthesis, structure determination and theory
  377. Strong Attraction of Caffeine to the Mercurous Dumbbell in the Salt [Hg2(Caf)2](ClO4)2(H2O)2
  378. Spectroscopic Properties of Rare Earth Iodides in the Ionic Liquid [C12mim][BTA]
  379. A Novel Type of Closed-shell Interactions? Chemical Bonding in {AgHg2}3+
  380. Stereochemistry and Bonding of Tl(I) in Macrocyclic Polyethers
  381. Influence of Cations on Physical Properties of the Zintl Phases
  382. An Oxygen-Centered Titanium Square Embedded in a Cuboctahedron of Iodine in the Salt K4[{Ti4O}I12].
  383. Unusual Electronic and Bonding Properties of the Zintl Phase Ca5Ge3 and Related Compounds. A Theoretical Analysis
  384. An Oxygen-Centered Titanium Square Embedded in a Cuboctahedron of Iodine in the Salt K4[{Ti4O}I12]
  385. Ein Titan-Quadrat mit zentralem Sauerstoffatom, eingebettet in einem Iod-Kuboktaeder in dem Salz K4[{Ti4O}I12]
  386. Unusual Electronic and Bonding Properties of the Zintl Phase Ca5Ge3and Related Compounds. A Theoretical Analysis1
  387. Nine Hexagonal Ca5Pb3Z Phases in Stuffed Mn5Si3-Type Structures with Transition Metal Interstitial Atoms Z. Problems with Classical Valence States in Possible Zintl Phases.
  388. Valence Compounds versus Metals. Synthesis, Characterization, and Electronic Structures of Cubic M4Pn3 Phases in the Systems M: Ca, Sr, Ba, Eu; Pn: As, Sb, Bi.
  389. Valence Compounds versus Metals. Synthesis, Characterization, and Electronic Structures of Cubic Ae4Pn3Phases in the Systems Ae = Ca, Sr, Ba, Eu; Pn = As, Sb, Bi
  390. Nine Hexagonal Ca5Pb3Z Phases in Stuffed Mn5Si3-Type Structures with Transition Metal Interstitial AtomsZ. Problems with Classical Valence States in Possible Zintl Phases
  391. Localized Charge Transfer in CsAu×NH3:1H and133Cs Nuclear Magnetic Resonance.
  392. Localized Charge Transfer in CsAu·NH3: 1H and133Cs Nuclear Magnetic Resonance
  393. Inorganic Chemistry Highlights Edited by Gerd Meyer, Dieter Naumann, and Lars Wesemann (University of Köln). Wiley-VCH:  Weinheim. 2002. xvi + 324 pp. $75.00. ISBN 3-527-30265-4.
  394. Gemischte Alkalimetallauridaurate der Zusammensetzung Rb7−xCsxAu5O2
  395. Neue Einblicke in die Chemie des Goldes
  396. Elektronische Eigenschaften von (Rb/Cs)3AuO
  397. The Metallic Behavior of Electron Precise Zintl Compounds: a Theoretical Investigation of the Electronic Structure of Ca5Ge3
  398. Cesiumauride Ammonia (1/1), CsAu⋅NH3: A Crystalline Analogue to Alkali Metals Dissolved in Ammonia?
  399. Cesiumauride Ammonia (1/1), CsAu⋅NH3: A Crystalline Analogue to Alkali Metals Dissolved in Ammonia?
  400. Darstellung und Kristallstruktur von Rb4Br2O und Rb6Br4O
  401. ChemInform Abstract: Synthesis and Crystal Structure of Cs3AuO2.
  402. ChemInform Abstract: Synthesis, Crystal Structure, and Properties of Na2RbAuO2.
  403. Synthese, Kristallstruktur und Eigenschaften von Na2RbAuO2
  404. Darstellung und Kristallstruktur von Cs6Cl4O / Preparation and Crystal Structure of Cs6Cl4O
  405. Synthese und Kristallstruktur von Cs3AuO2
  406. Synthese und Kristallstruktur von Cs3AuO2
  407. Crystal structure of sodium aurate(III), NaAuO2
  408. Crystal structure of monorubidiumaurate(I), RbAuO
  409. Crystal structure of tetrarubidium dichloride monooxide, Rb4(Cl2O)
  410. Crystal structure of monocesiumaurate(I), CsAuO
  411. Crystal structure of dicesium rubidium auride oxide, Cs2RbAuO
  412. ChemInform Abstract: Base-Induced Disproportionation of Elemental Gold.
  413. Mixed Valent Gold Oxides: Syntheses, Structures, and Properties of Rb5Au3O2, Rb7Au5O2, and Cs7Au5O2
  414. Baseninduzierte Disproportionierung von elementarem Gold
  415. Base-Induced Disproportionation of Elemental Gold
  416. Stereochemical Activity of Lone Pairs in Heavier Main-group Element Compounds