for at udvide
kategorilisten.
Søgning på underkategorier- og emner:
Bemærk: Kan ikke leveres før jul.
This thesis describes a series of investigations designed to assess the value of metalloenzymes in systems for artificial and adapted photosynthesis.
Bemærk: Kan ikke leveres før jul.
The series Topics in Current Chemistry Collections presents critical reviews from the journal Topics in Current Chemistry organized in topical volumes.
Bemærk: Kan ikke leveres før jul.
The series Topics in Current Chemistry Collections presents critical reviews from the journal Topics in Current Chemistry organized in topical volumes.
Bemærk: Kan ikke leveres før jul.
The necessary need to develop more sustainable chemical processes and the success of homogeneous catalysis relying on molecular organometallic chemistry has led the community of molecular chemists to investigate the preparation of single-site heterogeneous catalysts.
Bemærk: Kan ikke leveres før jul.
Malinakova: Palladium(IV) Complexes as Intermediates in Catalytic and Stoichiometric Cascade Sequences Providing Complex Carbocycles and Heterocycles.- Allan J.
Bemærk: Kan ikke leveres før jul.
Bemærk: Kan ikke leveres før jul.
Bemærk: Kan ikke leveres før jul.
Gerard van Koten: The Mono-anionic ECE-Pincer Ligand - a Versatile Privileged Ligand Platform: General Considerations.- Elena Poverenov, David Milstein: Non-Innocent Behavior of PCP and PCN Pincer Ligands of Late Metal Complexes.- Dean M.
Bemærk: Kan ikke leveres før jul.
The series Topics in Organometallic Chemistry presents critical overviews of research results in organometallic chemistry.
Bemærk: Kan ikke leveres før jul.
Bemærk: Kan ikke leveres før jul.
This book offers reviews on synthesis of heterocycles via Metal-Catalyzed Alkene Carboamination, or Carboalkoxylation Reactions; Metal-Catalyzed Alkene Diamination, Aminoalkoxylation, or Dialkoxylation Reactions; Metal-Catalyzed Hydroamination and others.
Bemærk: Kan ikke leveres før jul.
Cindy Schulenburg and Donald Hilvert, Protein Conformational Disorder and Enzyme Catalysis. Brooks III, Multiple Intermediates, Diverse Conformations, and Cooperative Conformational Changes Underlie the Catalytic Hydride Transfer Reaction of Dihydrofolate Reductase.