Maialen Espinal-Viguri

Affiliations: 
University of Bath (United Kingdom) 
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"Maialen Espinal-Viguri"
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Espinal-Viguri M, Varela-Izquierdo V, Miloserdov FM, et al. (2020) Correction: Heterobimetallic ruthenium-zinc complexes with bulky N-heterocyclic carbenes: syntheses, structures and reactivity. Dalton Transactions (Cambridge, England : 2003). 49: 6896
Espinal-Viguri M, Varela-Izquierdo V, Miloserdov FM, et al. (2019) Heterobimetallic ruthenium-zinc complexes with bulky N-heterocyclic carbenes: syntheses, structures and reactivity. Dalton Transactions (Cambridge, England : 2003). 48: 4176-4189
Espinal-Viguri M, Neale S, Coles NT, et al. (2018) Room temperature iron-catalyzed transfer hydrogenation and regioselective deuteration of carbon-carbon double bonds. Journal of the American Chemical Society
Espinal-Viguri M, Mahon MF, Tyler SN, et al. (2017) Iron catalysis for the synthesis of ligands: Exploring the products of hydrophosphination as ligands in cross-coupling Tetrahedron. 73: 64-69
Riera L, Fombona S, Espinal-Viguri M, et al. (2016) Activation of aromatic C-C bonds of 2,2'-bipyridine ligands. Chemistry (Weinheim An Der Bergstrasse, Germany)
Espinal-Viguri M, Woof C, Webster RL. (2016) Iron catalyzed hydroboration: unlocking reactivity through ligand modulation. Chemistry (Weinheim An Der Bergstrasse, Germany)
Espinal-Viguri M, King AK, Lowe JP, et al. (2016) Hydrophosphination of Unactivated Alkenes and Alkynes Using Iron(II): Catalysis and Mechanistic Insight Acs Catalysis. 6: 7892-7897
Gallagher KJ, Espinal-Viguri M, Mahon MF, et al. (2016) A Study of Two Highly Active, Air-Stable Iron(III)-μ-Oxo Precatalysts: Synthetic Scope of Hydrophosphination using Phenyl- and Diphenylphosphine Advanced Synthesis and Catalysis
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