1,069 results on '"Rauchfuss, Thomas B."'
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2. Biosynthesis of the [FeFe] hydrogenase H-cluster via a synthetic [Fe( ii )(CN)(CO) 2 (cysteinate)] − complex
3. Crystal Structure of the [FeFe]-Hydrogenase Maturase HydE Bound to Complex‑B
4. Using nature’s blueprint to expand catalysis with Earth-abundant metals
5. Radical SAM Enzyme HydE Generates Adenosylated Fe(I) Intermediates En Route to the [FeFe]-Hydrogenase Catalytic H‑Cluster
6. The binuclear cluster of [FeFe] hydrogenase is formed with sulfur donated by cysteine of an [Fe(Cys)(CO)2(CN)] organometallic precursor
7. The H‑cluster of [FeFe] Hydrogenases: Its Enzymatic Synthesis and Parallel Inorganic Semisynthesis.
8. Final Stages in the Biosynthesis of the [FeFe]‐Hydrogenase Active Site
9. Synthesis, Spectroscopy, and Structure of [FeRu(μ-dithiolate)(CN)2(CO)4]2–
10. [Ru3(CN)3(CO)9]3−:Building Block for Multimetallic Cages.
11. Systematic Assembly of the Double Molecular Boxes: $\lbrace Cs\!\subset\![CpCo(CN)_3]_4[Cp^\ast Ru]_3\rbrace$ as a Tridentate Ligand
12. Synthesis, Spectroscopy, and Structure of [FeRu(μ-dithiolate)(CN)2(CO)4]2–.
13. Fully Refined Semisynthesis of the [FeFe] Hydrogenase H‑Cluster.
14. SYNTHESIS OF SELECTED TRANSITION METAL AND MAIN GROUP COMPOUNDS WITH SYNTHETIC APPLICATIONS
15. Fully Refined Semisynthesis of the [FeFe] Hydrogenase H-Cluster
16. Hybrids of [FeFe]- and [NiFe]‑H2ase Active Site Models.
17. Synthesis and Dynamics of Ferrous Polychalcogenides [Fe(Ex)(CN)2(CO)2]2– (E = S, Se, or Te).
18. Synthesis and Dynamics of Ferrous Polychalcogenides [Fe(Ex)(CN)2(CO)2]2– (E = S, Se, or Te)
19. A Promising Mimic of Hydrogenase Activity
20. Biosynthesis of the [FeFe] hydrogenase H-cluster via a synthetic [Fe(II)(CN)(CO)2(cysteinate)]- complex
21. Challenges in the Synthesis of Active Site Mimics for [NiFe]-Hydrogenases
22. Surprising Condensation Reactions of the Azadithiolate Cofactor
23. Heptacarbonyl(Disulfido)Dimanganese(I)
24. Homoleptic Rhodium Pyridine Complexes for Catalytic Hydrogen Oxidation
25. Vibrational Perturbation of the [FeFe] Hydrogenase H-Cluster Revealed by 13C2H-ADT Labeling
26. Nanoscale ensembles using building blocks inspired by the [FeFe]-hydrogenase active site
27. Synthesis and Dynamics of Ferrous Polychalcogenides [Fe(Ex)(CN)2(CO)2]2– (E = S, Se, or Te).
28. Computational and Experimental Investigations of the Fe2(μ-S2)/Fe2(μ-S)2 Equilibrium
29. Biosynthesis of the [FeFe] hydrogenase H-cluster via a synthetic [Fe(ii)(CN)(CO)2(cysteinate)]− complex
30. Inhibition of [FeFe]-hydrogenase by formaldehyde: proposed mechanism and reactivity of FeFe alkyl complexes
31. CO substitution by PPh3 in Fe2S2(CO)6 proceeds via a novel Fe2S intermediate
32. Chelate control of diiron(I) dithiolates relevant to the [Fe-Fe]-hydrogenase active site
33. Using nature’s blueprint to expand catalysis with Earth-abundant metals
34. MS2(Me2PC2H4PMe2)2 (M = Mo, W): Acid-base properties, proton transfer, and reversible protonolysis of sulfido ligands
35. Organo-tricyanoborates as tectons: Illustrative coordination polymers based on copper(I) derivatives
36. Application of Hemilabile Ligands to “At-Metal Switching” Hydrogenation Catalysis
37. Final Report: Cathode Catalysis in Hydrogen/Oxygen Fuel Cells: New Catalysts, Mechanism, and Characterization
38. Structural chemistry of 'Defect' cyanometalate boxes: {Cs subset [CpCo(CN)3] (sub 4) [Cp*Ru] (sub 3)} and {M subset [Cp*Rh(CN)3] (sub 4) [Cp*Ru] (sub 3)} (M = NH4, Cs)
39. Bimetallic carbonyl thiolates as functional models for Fe-only hydrogenases
40. Systematic assembly of the double molecular boxes: {Cs[subset][[CpCo[(CN).sub.3]].sub.4][[Cp*Ru].sub.3]} as a tridentate ligand
41. Preparative and structural studies on the carbonyl cyanides of iron, manganese, and ruthenium: fundamentals relevant to the hydrogenases
42. Synthetic and structural studies on [Fe2(SR)(Sub 2)(CN)(Sub x)(CO)(Sub 6-x)](Super x-) as active site models for Fe-only hydrogenases
43. Reactions of [Fe 6 C(CO) 14 (S)] 2 – : Cluster Growth, Redox, Sulfiding
44. The Coordination Chemistry of Thiophenes
45. Bis(Hydrogensulfido) Complexes of Bis(η5 -Cyclopentadienyl) Titanium(IV) and Tungsten(IV)
46. Fe2 (S2 )(CO)6 and Fe3 Te2 (CO)9,10
47. Simple Preparation of Benzenethiolato and Benzeneselenolato Derivatives of Indium and Tin
48. Bis(η5-Methylcyclopentadienyl)Titanium Pentasulfide, Bis(μ-Methylcyclopentadienyl)-Divanadium Pentasulfide, and Bis(μ5-Methylcyclopentadienyl)Divanadium Tetrasulfide
49. 39. Substituted Triaryl Phosphines
50. The N-H...S hydrogen bond in (TACN)2Fe2S6 and in model systems involving the Persulfido moiety: An ab initio and DFT study
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