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Pure Appl. Chem., 1998, Vol. 70, No. 1, pp. 25-31

Structural bases for the catalytic mechanism of NiFe hydrogenase

Y. Montet, E. Garcin, A. Volbeda, C. Hatchikian, M. Frey and J. C. Fontecilla-Camps

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  • Ponikiewski Łukasz, Pladzyk Agnieszka, Wojnowski Wiesław, Becker Barbara: Nickel(II) tri-tert-butoxysilanethiolates with N-heterocyclic bases as additional ligands: Synthesis, molecular structure and spectral studies. J Polyhedron 2011, 30, 2400. <>
  • Mango F. D., Jarvie D. M., Herriman E.: Natural catalytic activity in a marine shale for generating natural gas. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 2010, 466, 3527. <>
  • Koay Melissa S., Antonkine Mikhail L., Gärtner Wolfgang, Lubitz Wolfgang: Modelling Low-Potential [Fe4S4] Clusters in Proteins. C&B 2008, 5, 1571. <>
  • Almeida Sı́lvia S.P.R, Guedes da Silva M.Fátima C, Jerzykiewicz Lucjan B, Sobota Piotr, Pombeiro Armando J.L: Cyanide as a versatile Lewis base ligand at a dinitrogen-binding iron(II) centre: mono- and heteronuclear adducts. Inorg Chim Ada 2003, 356, 259. <>
  • Almeida Sílvia S. P. R., Guedes Da Silva M. Fátima C., Pombeiro Armando J. L.: Electrochemical Behaviour of trans-[FeH(CN)(dppe)2] Adducts. Collect Czech Chem Commun 2003, 68, 1663. <>
  • Banica Florinel G., Ion Ana: Electrochemical Investigations of the Nickel(II)-Penicillamine System. 3. A Study of the Catalytic Hydrogen Prewave in Connection with Structure of Nickel(II)-Penicillamine Complexes. Collect Czech Chem Commun 2000, 65, 995. <>
  • Maroney Michael J: Structure/function relationships in nickel metallobiochemistry. Curr Opin Chem Biol 1999, 3, 188. <>