All Stories

  1. The first crystal structure of an alpha-fluoroalcohol
  2. Perfluoroalcohols: The Preparation and Crystal Structures of Heptafluorocyclobutanol and Hexafluorocyclobutane-1,1-diol
  3. Dinitramidoborates: A Fascinating Case of Competing Oxygen and Nitrogen Donors and Tautomerism
  4. Dinitramidoborates: A Fascinating Case of Competing Oxygen and Nitrogen Donors and Tautomerism
  5. Protonierung von Nitraminen: Bildung des O- oder N-protonierten Kations
  6. Protonation of Nitramines: Where Does the Proton Go?
  7. Synthesis and Characterization of Nitro-, Trinitromethyl-, and Fluorodinitromethyl- substituted Triazolyl- and Tetrazolyl-trihydridoborate Anions
  8. Rücktitelbild: Formation Mechanism of NF4 + Salts and Extraordinary Enhancement of the Oxidizing Power of Fluorine by Strong Lewis Acids (Angew. Chem. 27/2017)
  9. Back Cover: Formation Mechanism of NF4 + Salts and Extraordinary Enhancement of the Oxidizing Power of Fluorine by Strong Lewis Acids (Angew. Chem. Int. Ed. 27/2017)
  10. Preparation and Characterization of Group 13 Cyanides
  11. Cover Picture: Preparation and Characterization of Group 13 Cyanides (Chem. Eur. J. 38/2017)
  12. Preparation and Characterization of Group 13 Cyanides
  13. Formation Mechanism of NF4 + Salts and Extraordinary Enhancement of the Oxidizing Power of Fluorine by Strong Lewis Acids
  14. Formation Mechanism of NF4 + Salts and Extraordinary Enhancement of the Oxidizing Power of Fluorine by Strong Lewis Acids
  15. Synthesis and characterization of a tetranickel complex supported by a dithiolate framework with pendant ether moieties
  16. Group 13 Cyanides & Happiness
  17. H2 evolution by a cobalt selenolate electrocatalyst and related mechanistic studies
  18. The Uranium(VI) Oxoazides [UO2(N3)2⋅CH3CN], [(bipy)2(UO2)2(N3)4], [(bipy)UO2(N3)3]−, [UO2(N3)4]2−, and [(UO2)2(N3)8]4−
  19. ChemInform Abstract: The Binary Group 4 Azides [PPh4]2[Zr(N3)6] and [PPh4]2[Hf(N3)6].
  20. The crystal structure of carbamoyl fluoride, NH2COF
  21. The Binary Group 4 Azides [PPh4]2[Zr(N3)6] and [PPh4]2[Hf(N3)6]
  22. The Binary Group 4 Azides [PPh4]2[Zr(N3)6] and [PPh4]2[Hf(N3)6]
  23. Preparation and Characterization of Antimony and Arsenic Tricyanide and Their 2,2′-Bipyridine Adducts
  24. Proton-Assisted Reduction of CO2by Cobalt Aminopyridine Macrocycles
  25. ChemInform Abstract: Single Crystal Magnetic Structure and Susceptibility of CoSe2O5.
  26. Single crystal magnetic structure and susceptibility of CoSe 2 O 5
  27. ChemInform Abstract: The Molybdenum(V) and Tungsten(VI) Oxoazides [MoO(N3)3], [MoO(N3)3·2CH3CN], [(bipy)MoO(N3)3], [MoO(N3)5]2-, [WO(N3)4], and [WO(N3)4·CH3CN].
  28. Singlet Fission in a Covalently Linked Cofacial Alkynyltetracene Dimer
  29. A quinoidal bis-phenalenyl-fused porphyrin with supramolecular organization and broad near-infrared absorption
  30. Protonation of nitriles: isolation and characterization of alkyl- and arylnitrilium ions
  31. The niobium oxoazides [NbO(N3)3], [NbO(N3)3·2CH3CN], [(bipy)NbO(N3)3], Cs2[NbO(N3)5] and [PPh4]2[NbO(N3)...
  32. Syntheses of Diphenylaminodiazidophosphane and Diphenylaminofluoroazidophosphane
  33. Lewis Acid Catalyzed Synthesis of Di/Trifluoromethyl- 1,2,3,4-Tetrahydroquinazolines
  34. Ralf Haiges
  35. The Molybdenum(V) and Tungsten(VI) Oxoazides [MoO(N3)3], [MoO(N3)3⋅2 CH3CN], [(bipy)MoO(N3)3], [MoO(N3)5]2−, [WO(N3)4], and [WO(N3)4⋅CH3CN]
  36. Die Molybdän(V)- und Wolfram(VI)-oxoazide [MoO(N3)3], [MoO(N3)3⋅2 CH3CN], [(bipy)MoO(N3)3], [MoO(N3)5]2−, [WO(N3)4] und [WO(N3)4⋅CH3CN]
  37. ChemInform Abstract: Lewis Acid Catalyzed Condensation-Cyclization Cascade: Direct Synthesis of Di/Trifluoromethyl-1,2,3,4-tetrahydroquinazolines.
  38. Convenient Access to α-Fluorinated Alkylammonium Salts
  39. Einfacher Zugang zu α-Fluoralkylammoniumsalzen
  40. ChemInform Abstract: The First Molybdenum(VI) and Tungsten(VI) Oxoazides MO2(N3)2, MO2(N3)2·2CH3CN, (bipy)MO2(N3)2, and [MO2(N3)4]2-(M: Mo, W).
  41. Ralf Haiges
  42. Investigation of contamination of thin-film aluminum filters by MMH-NTO plumes exposed to UV radiation
  43. ChemInform Abstract: The Vanadium(V) Oxoazides [VO(N3)3], [(bipy)VO(N3)3], and [VO(N3)5]2-.
  44. Ammonia-(Dinitramido)boranes: High-Energy-Density Materials
  45. Ammonia-(Dinitramido)boranes: High-Energy-Density Materials
  46. The First Molybdenum(VI) and Tungsten(VI) Oxoazides MO2(N3)2, MO2(N3)2⋅2 CH3CN, (bipy)MO2(N3)2, and [MO2(N3)4]2−(M=Mo, W)
  47. The First Molybdenum(VI) and Tungsten(VI) Oxoazides MO2(N3)2, MO2(N3)2⋅2 CH3CN, (bipy)MO2(N3)2, and [MO2(N3)4]2−(M=Mo, W)
  48. The Vanadium(V) Oxoazides [VO(N3)3], [(bipy)VO(N3)3], and [VO(N3)5]2−
  49. The Vanadium(V) Oxoazides [VO(N3)3], [(bipy)VO(N3)3], and [VO(N3)5]2−
  50. Lewis Acid Catalyzed Condensation-Cyclization Cascade: Direct Synthesis of Di/Trifluoromethyl-1,2,3,4-tetrahydroquinazolines
  51. Are DTTO and iso -DTTO Worthwhile Targets for Synthesis?
  52. Amine-Free Reversible Hydrogen Storage in Formate Salts Catalyzed by Ruthenium Pincer Complex without pH Control or Solvent Change
  53. ChemInform Abstract: Synthesis and Characterization of Fluorodinitroamine, FN(NO2)2.
  54. Synthesis and structural characterization of 3,5-dinitro-1,2,4-triazolates
  55. Preparation and characterization of 3,5-dinitro-1H-1,2,4-triazole
  56. 5-(Fluorodinitromethyl)-2H-tetrazole and its tetrazolates – Preparation and Characterization of New High Energy Compounds
  57. Synthesis and photophysical characterization of a bis-pincer osmium complex
  58. Synthesis and Characterization of Fluorodinitroamine, FN(NO2)2
  59. Synthesis and Characterization of Fluorodinitroamine, FN(NO2)2
  60. Long-Lived Trifluoromethanide Anion: A Key Intermediate in Nucleophilic Trifluoromethylations
  61. Titelbild: Long-Lived Trifluoromethanide Anion: A Key Intermediate in Nucleophilic Trifluoromethylations (Angew. Chem. 43/2014)
  62. Cover Picture: Long-Lived Trifluoromethanide Anion: A Key Intermediate in Nucleophilic Trifluoromethylations (Angew. Chem. Int. Ed. 43/2014)
  63. Long-Lived Trifluoromethanide Anion: A Key Intermediate in Nucleophilic Trifluoromethylations
  64. Preparation of the First Manganese(III) and Manganese(IV) Azides
  65. Preparation of the First Manganese(III) and Manganese(IV) Azides
  66. ChemInform Abstract: Stereoselective Synthesis of Fluoroalkenoates and Fluorinated Isoxazolidinones: N-Substituents Governing the Dual Reactivity of Nitrones.
  67. Rücktitelbild: Nitryl Cyanide, NCNO2(Angew. Chem. 27/2014)
  68. Back Cover: Nitryl Cyanide, NCNO2(Angew. Chem. Int. Ed. 27/2014)
  69. Nitryl Cyanide, NCNO2
  70. Nitryl Cyanide, NCNO2
  71. ChemInform Abstract: N-Difluoromethylation of Imidazoles and Benzimidazoles Using the Ruppert-Prakash Reagent under Neutral Conditions.
  72. Adduct Formation of Tantalum(V)- and Niobium(V) Fluoride with Neutral Group 15 Donor Ligands, an Example for Ligand Induced Self-Ionization
  73. Coordination Adducts of Niobium(V) and Tantalum(V) Azide M(N3)5(M=Nb, Ta) with Nitrogen Donor Ligands and their Self-Ionization
  74. Coordination Adducts of Niobium(V) and Tantalum(V) Azide M(N3)5(M=Nb, Ta) with Nitrogen Donor Ligands and their Self-Ionization
  75. ChemInform Abstract: Thermolysis of Trifluoromethyl-Containing Vinyldiazocarbonyl Compounds and X-Ray Crystal Structure Analysis of Unexpected Reaction Products.
  76. ChemInform Abstract: Difluoro(sulfinato)methylation of N-Sulfinyl Imines Facilitated by 2-Pyridyl Sulfone: Stereoselective Synthesis of Difluorinated β-Amino Sulfonic Acids and Peptidosulfonamides.
  77. N-Difluoromethylation of Imidazoles and Benzimidazoles Using the Ruppert–Prakash Reagent under Neutral Conditions
  78. Control of emission colour with N-heterocyclic carbene (NHC) ligands in phosphorescent three-coordinate Cu(i) complexes
  79. 4-Oxo- or 1-oxo-N7O+? A computational and experimental study
  80. Formic Acid As a Hydrogen Storage Medium: Ruthenium-Catalyzed Generation of Hydrogen from Formic Acid in Emulsions
  81. Stereoselective Synthesis of Fluoroalkenoates and Fluorinated Isoxazolidinones: N-Substituents Governing the Dual Reactivity of Nitrones
  82. Thermolysis of trifluoromethyl-containing vinyldiazocarbonyl compounds and X-ray crystal structure analysis of unexpected reaction products
  83. [BH3C(NO2)3]−: The First Room-Temperature Stable (Trinitromethyl)borate
  84. [BH3C(NO2)3]−: The First Room-Temperature Stable (Trinitromethyl)borate
  85. Difluoro(sulfinato)methylation of N-Sulfinyl Imines Facilitated by 2-Pyridyl Sulfone: Stereoselective Synthesis of Difluorinated β-Amino Sulfonic Acids and Peptidosulfonamides
  86. Difluoro(sulfinato)methylation of N-Sulfinyl Imines Facilitated by 2-Pyridyl Sulfone: Stereoselective Synthesis of Difluorinated β-Amino Sulfonic Acids and Peptidosulfonamides
  87. ChemInform Abstract: Direct Synthesis of Diverse β-Fluoroethylamines by a Multicomponent Protocol.
  88. Energetic High-Nitrogen Compounds: 5-(Trinitromethyl)-2H-tetrazole and -tetrazolates, Preparation, Characterization, and Conversion into 5-(Dinitromethyl)tetrazoles
  89. Energetic Bis(3,5-dinitro-1H-1,2,4-triazolyl)dihydro- and dichloroborates and Bis(5-nitro-2H-tetrazolyl)-, Bis(5-(trinitromethyl)-2H-tetrazolyl)-, and Bis(5-(fluorodinitromethyl)-2H-tetrazolyl)dihydroborate
  90. Increasing Sensitivity in Determining Chemical Shifts in One Dimensional Lorentzian NMR Spectra
  91. ChemInform Abstract: Unprecedented Conformational Variability in Main Group Inorganic Chemistry: The Tetraazidoarsenite and -Antimonite Salts A+[M(N3)4]-(A: NMe4, PPh4, (Ph3P)2N; M: As, Sb), Five Similar Salts, Five Different Anion Structures.
  92. Direct Synthesis of Diverse β-Fluoroethylamines by a Multicomponent Protocol
  93. Unprecedented Conformational Variability in Main Group Inorganic Chemistry: the Tetraazidoarsenite and -Antimonite Salts A+[M(N3)4]−(A = NMe4, PPh4, (Ph3P)2N; M = As, Sb), Five Similar Salts, Five Different Anion Structures
  94. Structural and Photophysical Studies of Phosphorescent Three-Coordinate Copper(I) Complexes Supported by an N-Heterocyclic Carbene Ligand
  95. Preparation of Transition Metal Fluorides using ClF3
  96. ChemInform Abstract: Enantioselective Synthesis of α-Stereogenic γ-Keto Esters via Formal Umpolung.
  97. ChemInform Abstract: Fluoride-Ion Acceptor Properties of WSF4: Synthesis, Characterization, and Computational Study of the WSF-5and W2S2F9-Anions and19F NMR Spectroscopic Characterization of the W2OSF9-Anion.
  98. Enantioselective Synthesis of α-Stereogenic γ-Keto Esters via Formal Umpolung
  99. Fluoride-Ion Acceptor Properties of WSF4: Synthesis, Characterization, and Computational Study of the WSF5–and W2S2F9–Anions and19F NMR Spectroscopic Characterization of the W2OSF9–Anion
  100. ChemInform Abstract: Facile Synthesis of α-Monofluoromethyl Alcohols: Nucleophilic Monofluoromethylation of Aldehydes Using TMSCF(SO2Ph)2.
  101. Binary Group 15 Polyazides. Structural Characterization of [Bi(N3)4]−, [Bi(N3)5]2–, [bipy·Bi(N3)5]2–, [Bi(N3)6]3–, bipy·As(N3)3, bipy·Sb(N3)3, and [(bipy)2·Bi(N3)3]2and on the Lone Pair Activation of Valence Electrons
  102. Structure of Cyclic Nucleoside Phosphonate Ester Prodrugs: An Inquiry
  103. Facile synthesis of α-monofluoromethyl alcohols: Nucleophilic monofluoromethylation of aldehydes using TMSCF(SO2Ph)2
  104. ChemInform Abstract: Preparation and Characterization of the Binary Group 13 Azides M(N3)3and M(N3)3·CH3CN (M: Ga, In, Tl), [Ga(N3)5]2-, and [M(N3)6]3-(M: In, Tl).
  105. N,N-Diarylanilinosquaraines and Their Application to Organic Photovoltaics
  106. On the Nature of CH⋅⋅⋅FC Interactions in Hindered CF3C(sp3) Bond Rotations
  107. On the Nature of CH⋅⋅⋅FC Interactions in Hindered CF3C(sp3) Bond Rotations
  108. Synthesis, stereochemistry and SAR of a series of minodronate analogues as RGGT inhibitors
  109. Preparation and Characterization of the Binary Group 13 Azides M(N3)3 and M(N3)3⋅CH3CN (M=Ga, In, Tl), [Ga(N3)5]2−, and [M(N3)6]3− (M=In, Tl)
  110. Preparation and Characterization of the Binary Group 13 Azides M(N3)3 and M(N3)3⋅CH3CN (M=Ga, In, Tl), [Ga(N3)5]2−, and [M(N3)6]3− (M=In, Tl)
  111. Conformational Study of 9-Dehydro-9-Trifluoromethyl Cinchona Alkaloids via19F NMR Spectroscopy: Emergence of Trifluoromethyl Moiety as a Conformational Stabilizer and a Probe
  112. Corrigendum to “Selenium(IV) fluoride and oxofluoride anions” [J. Fluorine Chem. 131 (2010) 791–799]
  113. Why Are [P(C6H5)4]+N3−and [As(C6H5)4]+N3−Ionic Salts and Sb(C6H5)4N3and Bi(C6H5)4N3Covalent Solids? A Theoretical Study Provides an Unexpected Answer
  114. Hydrogen Generation from Formic Acid Decomposition by Ruthenium Carbonyl Complexes. Tetraruthenium Dodecacarbonyl Tetrahydride as an Active Intermediate
  115. A serendipitous phosphonocarboxylate complex of boron: when vessel becomes reagent
  116. ChemInform Abstract: The Syntheses and Structure of the Vanadium(IV) and Vanadium(V) Binary Azides V(N3)4, [V(N3)6]2-, and [V(N3)6]-.
  117. ChemInform Abstract: Dinitrogen Difluoride Chemistry. Improved Syntheses of cis- and trans-N2F2, Synthesis and Characterization of N2F+Sn2F9-, Ordered Crystal Structure of N2F+Sb2F11-, High-Level Electronic Structure Calculations of cis-N2F2, trans-N2F2,
  118. The Syntheses and Structure of the Vanadium(IV) and Vanadium(V) Binary Azides V(N3)4, [V(N3)6]2−, and [V(N3)6]−
  119. The Syntheses and Structure of the Vanadium(IV) and Vanadium(V) Binary Azides V(N3)4, [V(N3)6]2−, and [V(N3)6]−
  120. Dinitrogen Difluoride Chemistry. Improved Syntheses ofcis- andtrans-N2F2, Synthesis and Characterization of N2F+Sn2F9−, Ordered Crystal Structure of N2F+Sb2F11−, High-Level Electronic Structure Calculations ofcis-N2F2,trans-N2F2, F2N═N, and N2F+, and M...
  121. Selenium(IV) fluoride and oxofluoride anions
  122. ChemInform Abstract: Synthesis and Properties of N7O+.
  123. ChemInform Abstract: Improved Synthesis of CsN3.
  124. Synthesis and Properties of N7O+
  125. Sulfuryl and Thionyl Halide-Based Ultralow Temperature Primary Batteries
  126. Synthesis of New High-Oxygen Carriers and Ditetrazinetetroxide (DTTO)
  127. A Persistent α-Fluorocarbanion and Its Analogues: Preparation, Characterization, and Computational Study
  128. A Persistent α-Fluorocarbanion and Its Analogues: Preparation, Characterization, and Computational Study
  129. ChemInform Abstract: The Binary Selenium(IV) Azides Se(N3)4, [Se(N3)5]-, and [Se(N3)6]2-.
  130. Energetics and Mechanism of the Decomposition of Trifluoromethanol
  131. Die binären Selen(IV)-azide Se(N3)4, [Se(N3)5]− und [Se(N3)6]2−
  132. The Binary Selenium(IV) Azides Se(N3)4, [Se(N3)5]−, and [Se(N3)6]2−
  133. Convenient Access to Trifluoromethanol
  134. Convenient Access to Trifluoromethanol
  135. Synthesis and Characterization of (Z)-[N3NFO]+ and (E)-[N3NFO]+.
  136. Monocapped Trigonal-Prismatic Transition-Metal Heptaazides: Syntheses, Properties, and Structures of [Nb(N3)7]2- and [Ta(N3)7]2-.
  137. Synthesis and Characterization of (Z)-[N3NFO]+ and (E)-[N3NFO]+
  138. Synthesis and Characterization of (Z)-[N3NFO]+ and (E)-[N3NFO]+
  139. Monocapped Trigonal-Prismatic Transition-Metal Heptaazides: Syntheses, Properties, and Structures of [Nb(N3)7]2− and [Ta(N3)7]2−
  140. Monocapped Trigonal-Prismatic Transition-Metal Heptaazides: Syntheses, Properties, and Structures of [Nb(N3)7]2− and [Ta(N3)7]2−
  141. Synthesis and Characterization of Silyldichloramines, Their Reactions with F-Ions, Instability of N2Cl2and NCl2-, and Formation of NCl3
  142. Are the NF4+ Cations in NF4BF4 Really Nontetrahedral?
  143. Preparation, Characterization, and Crystal Structures of the SO3NHF- and SO3NF-2 Ions.
  144. Experimental Evidence for Linear Metal—Azido Coordination: The Binary Group 5 Azides [Nb(N3)5], [Ta(N3)5], [Nb(N3)6]-, and [Ta(N3)6]-, and 1:1 Acetonitrile Adducts [Nb(N3)5(CH3CN)] and [Ta(N3)5(CH3CN)].
  145. Are the NF4+Cations in NF4BF4Really Nontetrahedral?
  146. Preparation, Characterization, and Crystal Structures of the SO3NHF− and SO3NF2− Ions
  147. Preparation, Characterization, and Crystal Structures of the SO3NHF− and SO3NF2− Ions
  148. Oxygen-Balanced Energetic Ionic Liquid
  149. Oxygen-Balanced Energetic Ionic Liquid
  150. Experimental Evidence for Linear Metal–Azido Coordination: The Binary Group 5 Azides [Nb(N3)5], [Ta(N3)5], [Nb(N3)6]−, and [Ta(N3)6]−, and 1:1 Acetonitrile Adducts [Nb(N3)5(CH3CN)] and [Ta(N3)5(CH3CN)]
  151. Experimental Evidence for Linear Metal–Azido Coordination: The Binary Group 5 Azides [Nb(N3)5], [Ta(N3)5], [Nb(N3)6]−, and [Ta(N3)6]−, and 1:1 Acetonitrile Adducts [Nb(N3)5(CH3CN)] and [Ta(N3)5(CH3CN)]
  152. New Signal Processing Method for the Faster Observation of Natural-Abundance15N NMR Spectra and Its Application to N5+
  153. The Syntheses and Structures of Ph4EN3 (E = P, As, Sb), an Example for the Transition from Ionic to Covalent Azides within the Same Main Group
  154. Polyazide Chemistry: The First Binary Group 6 Azides, Mo(N3)6, W(N3)6, [Mo(N3)7]-, and [W(N3)7]-, and the [NW(N3)4]- and [NMo(N3)4]- Ions.
  155. Polyazide Chemistry: The First Binary Group 6 Azides, Mo(N3)6, W(N3)6, [Mo(N3)7]?, and [W(N3)7]?, and the [NW(N3)4]? and [NMo(N3)4]? Ions
  156. Polyazide Chemistry: The First Binary Group 6 Azides, Mo(N3)6, W(N3)6, [Mo(N3)7]?, and [W(N3)7]?, and the [NW(N3)4]? and [NMo(N3)4]? Ions
  157. Polyazide Chemistry: Preparation and Characterization of As(N3)5, Sb(N3)5, and [P(C6H5)4][Sb(N3)6].
  158. The race for the first generation of the pentazolate anion in solution is far from over
  159. The [NH3Cl]+ Ion.
  160. Polyazide Chemistry: Preparation and Characterization of As(N3)5, Sb(N3)5, and [P(C6H5)4][Sb(N3)6]
  161. Polyazide Chemistry: Preparation and Characterization of As(N3)5, Sb(N3)5, and [P(C6H5)4][Sb(N3)6]
  162. High-Energy-Density Materials: Synthesis and Characterization of N+5[P(N3)6]-, N+5[B(N3)4]-, N+5[HF2]-×nHF, N+5[BF4]-, N+5[PF6]-, and N+5[SO3F]-.
  163. The[NH3Cl]+ Ion
  164. The[NH3Cl]+ Ion
  165. High-Energy-Density Materials: Synthesis and Characterization of N5+[P(N3)6]−, N5+ [B(N3)4]−, N5+ [HF2]−⋅n HF, N5+ [BF4]−, N5+ [PF6]−, and N5+ [SO3F]−
  166. High-Energy-Density Materials: Synthesis and Characterization of N5+[P(N3)6]−, N5+ [B(N3)4]−, N5+ [HF2]−⋅n HF, N5+ [BF4]−, N5+ [PF6]−, and N5+ [SO3F]−
  167. The Binary Group 4 Azides [Ti(N3)4], [P(C6H5)4][Ti(N3)5], and [P(C6H5)4]2 [Ti(N3)6] and on Linear Ti—N—NN Coordination.
  168. The Binary Group 4 Azides[Ti(N3)4],[P(C6H5)4][Ti(N3)5], and[P(C6H5)4]2[Ti(N3)6] and on Linear TiNNN Coordination
  169. The Binary Group 4 Azides[Ti(N3)4],[P(C6H5)4][Ti(N3)5], and[P(C6H5)4]2[Ti(N3)6] and on Linear TiNNN Coordination
  170. Methyl Tin(IV) Derivatives of HOTeF5and HN(SO2CF3)2:  A Solution Multinuclear NMR Study and the X-ray Crystal Structures of (CH3)2SnCl(OTeF5) and [(CH3)3Sn(H2O)2][N(SO2CF3)2]†
  171. Polyazide Chemistry: Preparation and Characterization of Te(N3)4 and [P(C6H5)4]2 [Te(N3)6] and Evidence for [N(CH3)4][Te(N3)5].
  172. First Structural Characterization of Binary AsIII and SbIII Azides
  173. Cover Picture: First Structural Characterization of Binary AsIII and SbIII Azides (Chem. Eur. J. 2/2004)
  174. Polyazide Chemistry: Preparation and Characterization of Te(N3)4 and[P(C6H5)4]2[Te(N3)6] and Evidence for[N(CH3)4][Te(N3)5]
  175. Polyazide Chemistry: Preparation and Characterization of Te(N3)4 and[P(C6H5)4]2[Te(N3)6] and Evidence for[N(CH3)4][Te(N3)5]
  176. The (SO2)2N3- Anion.
  177. The (SO2)2N3-Anion
  178. Tritylsulfinylamine: a new member in the family of sulfinylamines
  179. Experimental Detection of the Pentaazacyclopentadienide (Pentazolate) Anion, cyclo-N5− This work was funded predominantly by the Defense Advanced Research Projects Agency, with additional support from the Air Force Office of Scientific Research and t...
  180. Experimental Detection of the Pentaazacyclopentadienide (Pentazolate) Anion, cyclo-N5− This work was funded predominantly by the Defense Advanced Research Projects Agency, with additional support from the Air Force Office of Scientific Research and t...
  181. Synthesis and structural characterization of nitrogen containing high energy density materials
  182. An Improved Method for Product Separation in Metathetical Reactions and its Demonstration for the Synthesis of Anhydrous Cesium Salts
  183. Synthesis and Characterization of the SO2N3-, (SO2)2N3-, and SO3N3-Anions†
  184. The NMR shifts are not a measure for the nakedness of the fluoride anion
  185. Improved Synthesis of CsN3Dedicated to Professor Joachim Strähle on the Occasion of his 65th Birthday
  186. Reaktionen des donorfreien (CF3)2Cd mit Phosphor(V)halogeniden: Difluorcarben-Einschiebungen und Direktsynthese von (CF3)3PF2 / Reactions of Donor-Free (CF3)2Cd with Phosphorus(V) Halides: Insertion of Difluorocarbene and Direct Synthesis of (CF3)3PF2