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Inorganic Chemistry|July 17, 2009
Hydrogen activation by biomimetic diiron dithiolatesMatthew T Olsen, Bryan E Barton, Thomas B Rauchfuss
Current Opinion in Biotechnology|April 2, 2010
Artificial hydrogenasesBryan E Barton, Matthew T Olsen, Thomas B Rauchfuss
Journal of the American Chemical Society|December 5, 2008
Aza- and oxadithiolates are probable proton relays in functional models for the [FeFe]-hydrogenasesBryan E Barton, Matthew T Olsen, Thomas B Rauchfuss
Journal of the American Chemical Society|October 8, 2010
Hydride-containing models for the active site of the nickel-iron hydrogenasesBryan E Barton, Thomas B Rauchfuss
Organometallics|September 11, 2012
Reaction of Aryl Diazonium Salts and Diiron(I) Dithiolato Carbonyls: Evidence for Radical IntermediatesMatthew T Olsen, Thomas B Rauchfuss, Riccardo Zaffaroni
Journal of the American Chemical Society|December 1, 2010
Role of the azadithiolate cofactor in models for [FeFe]-hydrogenase: novel structures and catalytic implicationsMatthew T Olsen, Thomas B Rauchfuss, Scott R Wilson
Journal of the American Chemical Society|November 7, 2012
Synthetic models for the active site of the [FeFe]-hydrogenase: catalytic proton reduction and the structure of the doubly protonated intermediateMaria E Carroll, Bryan E Barton, Thomas B Rauchfuss, et al.
Journal of the American Chemical Society|May 6, 2009
Nickel-iron dithiolato hydrides relevant to the [NiFe]-hydrogenase active siteBryan E Barton, C Matthew Whaley, Thomas B Rauchfuss, et al.
Inorganic Chemistry|March 22, 2016
Preparation and Protonation of Fe2(pdt)(CNR)6, Electron-Rich Analogues of Fe2(pdt)(CO)6Xiaoyuan Zhou, Bryan E Barton, Geoffrey M Chambers, et al.
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