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HYDROGENASE ACTIVE SITES: A NEW PARADIGM FOR NATURAL PRODUCT-INSPIRED SYNTHESIS BASED ON ORGANOMETALLIC CHEMISTRY
Taylor & Francis Verlag | 2010| -
Synthetic Advances Inspired by the Bioactive Dinitrosyl Iron Unit
American Chemical Society | 2015| -
Metallodithiolates as Ligands in Coordination, Bioinorganic, and Organometallic Chemistry
American Chemical Society | 2015| -
The roles of chalcogenides in O2 protection of H2ase active sites
Free accessRoyal Society of Chemistry | 2020| -
A Mixed-Valent, Fe(II)Fe(I), Diiron Complex Reproduces the Unique Rotated State of the [FeFe]Hydrogenase Active Site
American Chemical Society | 2007| -
Development of (NO)Fe(N2S2) as a Metallodithiolate Spin Probe Ligand: A Case Study Approach
Free accessAmerican Chemical Society | 2024| -
Proton affinity studies of nickel $ N_{2} $$ S_{2} $ complexes and control of aggregation
Online Contents | 2019| -
Proton affinity studies of nickel $ N_{2} $$ S_{2} $ complexes and control of aggregation
Online Contents | 2019| -
A single carbon atom controls the geometry and reactivity of CoII(N2S2) complexes
Royal Society of Chemistry | 2024| -
Oxygen-Tolerant H2 Production by [FeFe]‑H2ase Active Site Mimics Aided by Second Sphere Proton Shuttle
American Chemical Society | 2018| -
Iron nitrosyl complexes as models for biological nitric oxide transfer reagents
Online Contents | 2006| -
Iron nitrosyl complexes as models for biological nitric oxide transfer reagents
Online Contents | 2006|
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