All Stories

  1. Rhodium catalysed conversion of carbenes into ketenes and ketene imines using PNN pincer complexes
  2. Convenient Transfer Semihydrogenation Methodology for Alkynes Using a PdII-NHC Precatalyst
  3. ChemInform Abstract: Complexes with Nitrogen‐Centered Radical Ligands: Classification, Spectroscopic Features, Reactivity, and Catalytic Applications
  4. Hydrogen‐Bond‐Assisted Activation of Allylic Alcohols for Palladium‐Catalyzed Coupling Reactions
  5. Metalloradical Approach to 2H-Chromenes
  6. ChemInform Abstract: Binuclear Cooperative Catalysts for the Hydrogenation and Hydroformylation of Olefins
  7. Germanium(iii) corrole complex: reactivity and mechanistic studies of visible-light promoted N–H bond activations
  8. Komplexe mit Stickstoffradikalliganden: Einteilung, spektroskopische Eigenschaften, Reaktivität und katalytische Anwendungen
  9. Carbene Radicals in Cobalt(II)–Porphyrin‐Catalysed Carbene Carbonylation Reactions; A Catalytic Approach to Ketenes
  10. Ligand Effects on the Hydrogenation of Biomass‐Inspired Substrates with Bifunctional Ru, Ir, and Rh Complexes
  11. ChemInform Abstract: Synthesis of Functional ′Polyolefins′: State of the Art and Remaining Challenges
  12. Binuclear Cooperative Catalysts for the Hydrogenation and Hydroformylation of Olefins
  13. Synthesis of functional ‘polyolefins’: state of the art and remaining challenges
  14. A different route to functional polyolefins: olefin–carbene copolymerisation
  15. Propagation and termination steps in Rh-mediated carbene polymerisation using diazomethane
  16. Offenschalige Polyhydridokomplexe von 3d‐Metallionen mit dem fac‐[RuH3(PR3)3]−‐Baustein
  17. Rh-Mediated C1-Polymerization: Copolymers from Diazoesters and Sulfoxonium Ylides
  18. Closed-shell and open-shell square-planar iridium nitrido complexes
  19. ChemInform Abstract: Ligand Denticity Controls Enantiomeric Preference in DNA‐Based Asymmetric Catalysis.
  20. Controlled Synthesis of Functional Copolymers with Blocky Architectures via Carbene Polymerization
  21. Stereospecific Carbene Polymerization with Oxygenated Rh(diene) Species
  22. ChemInform Abstract: Redox Non‐Innocent Ligands: Versatile New Tools to Control Catalytic Reactions
  23. Redox Non-Innocent Ligands: Versatile New Tools to Control Catalytic Reactions
  24. Ligand denticity controls enantiomeric preference in DNA-based asymmetric catalysis
  25. Cooperative & Redox Non‐Innocent Ligands in Directing Organometallic Reactivity (Eur. J. Inorg. Chem. 3/2012)
  26. Synthesis and Reactivity of Ester‐Functionalized 5‐Membered RhI‐κ2‐C,O‐Chelates and Their Relevance in Rh(cod)‐Mediated Carbene Polymerization
  27. Bas de Bruin
  28. Bas de Bruin
  29. ChemInform Abstract: Open‐Shell Organometallics: Reactivity at the Ligand
  30. Electronic Selectivity Tuning in Titanium(III)-Catalyzed Acetylene Cross-Dimerization Reactions
  31. ChemInform Abstract: Carbene Insertion into Transition Metal—Carbon Bonds: A New Tool for Catalytic C—C Bond Formation.
  32. Developing Synthetic Approaches with Non‐Innocent Metalloligands: Easy Access to IrI/Pd0 and IrI/Pd0/IrI Cores
  33. Developing Synthetic Approaches with Non‐Innocent Metalloligands: Easy Access to IrI/Pd0 and IrI/Pd0/IrI Cores
  34. ChemInform Abstract: Ligands that Store and Release Electrons During Catalysis.
  35. Redox Noninnocence of Carbene Ligands: Carbene Radicals in (Catalytic) C−C Bond Formation
  36. Liganden, die während der Katalyse Elektronen speichern und freisetzen
  37. Ligands that Store and Release Electrons during Catalysis
  38. Role of β-H Elimination in Rhodium-Mediated Carbene Insertion Polymerization
  39. Remote Supramolecular Control of Catalyst Selectivity in the Hydroformylation of Alkenes
  40. Remote Supramolecular Control of Catalyst Selectivity in the Hydroformylation of Alkenes
  41. The radical mechanism of cobalt(ii) porphyrin-catalyzed olefin aziridination and the importance of cooperative H-bonding
  42. Amino olefin nickel(i) and nickel(0) complexes as dehydrogenation catalysts for amine boranes
  43. Pd-mediated carbenepolymerisation: activity of palladium(ii) versus low-valent palladium
  44. Rücktitelbild:Remote Supramolecular Control of Catalyst Selectivity in the Hydroformylation of Alkenes (Angew. Chem. 2/2011)
  45. ChemInform Abstract: C1 Polymerization and Related C—C Bond Forming “Carbene Insertion” Reactions
  46. Rhodium-Catalyzed Asymmetric Hydroformylation with Taddol-Based IndolPhos Ligands
  47. Carbonyl Complexes of Rhodium with N-Donor Ligands: Factors Determining the Formation of Terminal versus Bridging Carbonyls
  48. Electromeric Rhodium Radical Complexes
  49. Electromeric Rhodium Radical Complexes
  50. C1 polymerisation and related C–C bond forming ‘carbeneinsertion’ reactions
  51. P–C dichotomy: divergent iron(−I)-mediated alkyne and phosphaalkyne cycloligomerisations
  52. Highly enantioselective hydroformylation of dihydrofurans catalyzed by hybrid phosphine–phosphonite rhodium complexes
  53. Rhodium-P,O-bidentate coordinated ureaphosphine ligands for asymmetric hydrogenation reactions
  54. Electromeric Rhodium Radical Complexes
  55. Electromeric Rhodium Radical Complexes
  56. Rhodium(0) Metalloradicals in Binuclear C−H Activation
  57. Ligand-Controlled Magnetic Interactions in Mn4 Clusters
  58. Wasserspaltung durch kooperative Katalyse
  59. Water Splitting by Cooperative Catalysis
  60. Sulfonamido−Phosphoramidite Ligands in Cooperative Dinuclear Hydrogenation Catalysis
  61. A Phosphorus Analogue of Bis(η 4 -cyclobutadiene)iron(0)
  62. Structure and Reactivity of a Unique Y‐Shaped Tricoordinate Bis(silyl)platinum(II)–NHC Complex
  63. Structure and Reactivity of a Unique Y‐Shaped Tricoordinate Bis(silyl)platinum(II)–NHC Complex
  64. Activation of Carbon Monoxide by (Me3tpa)Rh and (Me3tpa)Ir
  65. Supramolecular NHC ligands: on the influence of ZnII-templates on the activity of RhI(cod) complexes in ‘carbene polymerization’
  66. Selective CC Coupling of Ir–Ethene and Ir–Carbenoid Radicals
  67. ChemInform Abstract: The Organometallic Chemistry of Rh‐, Ir‐, Pd‐, and Pt‐Based Radicals: Higher Valent Species
  68. Spin density distribution in mononuclear Rh(0) complexes: A combined experimental and DFT study
  69. The Organometallic Chemistry of Rh‐, Ir‐, Pd‐, and Pt‐Based Radicals: Higher Valent Species
  70. Unusual Stereochemistry in Complexes of the Form [RhH(CO)2(PPri3)2]
  71. Paramagnetic (Alkene)Rh and (Alkene)Ir Complexes: Metal or Ligand Radicals?
  72. Open‐Shell Rhodium and Iridium Species in (Catalytic) Oxygenation Reactions
  73. Paramagnetic (Alkene)Rh and (Alkene)Ir Complexes: Metal or Ligand Radicals?
  74. Dynamic Combinatorial Chemistry: The Unexpected Choice of Receptors by Guest Molecules
  75. Open-shell rhodium and iridium species in (catalytic) oxygenation reactions
  76. Dynamische kombinatorische Chemie: die überraschende Rezeptorwahl durch Gastmoleküle
  77. Dynamic Combinatorial Chemistry: The Unexpected Choice of Receptors by Guest Molecules
  78. Gas-phase reactions of an iridium(I) complex with dioxygen – Comparison to solution-phase reactivity
  79. IrII(ethene):  Metal or Carbon Radical?
  80. IrII(ethene): Metal or carbon radical? Part II: Oxygenation via iridium or direct oxygenation at ethene?
  81. Functional Models for Rhodium‐Mediated Olefin‐Oxygenation Catalysis
  82. Modellreaktionen für die Rhodium‐katalysierte Oxygenierung von Alkenen
  83. Functional Models for Rhodium‐Mediated Olefin‐Oxygenation Catalysis
  84. Cobalt Chloride Complexes of N3 and N4 Donor Ligands
  85. Amido-bridged dinuclear rhodium(I) complexes by deprotonation of mononuclear rhodium(I) amine complexes
  86. New routes toward metallated methanofullerene terdentate bisaminoaryl ligands
  87. Oxidation of RhI(olefin) Fragments to 2‐Rhoda(III)oxetanes
  88. Oxidation von [RhI(olefin)]‐Fragmenten zu 2‐Rhoda(III)‐oxetanen
  89. Feste Bindung von Paraquat und polymeren Paraquat‐Derivaten in korbförmigen Wirtmolekülen
  90. Molecular Golf Balls: Vesicles from Bowl‐Shaped Host Molecules
  91. Molekulare Golfbälle: Vesikel aus schalenförmigen Wirtmolekülen
  92. Open-shell organometallics: reactivity at the ligand