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Chimia|June 21, 2020
A Short Perspective on Electrochemical CO₂ Reduction to COMaxime Tarrago, Shengfa YeChemical Science|September 21, 2022
Electronic structure analysis of electrochemical CO<sub>2</sub> reduction by iron-porphyrins reveals basic requirements for design of catalysts bearing non-innocent ligandsMaxime Tarrago, Shengfa Ye, Frank NeeseInorganic Chemistry|March 19, 2021
Experimental and Theoretical Evidence for an Unusual Almost Triply Degenerate Electronic Ground State of Ferrous TetraphenylporphyrinMaxime Tarrago, Christina Römelt, Joscha Nehrkorn, et al.Inorganic Chemistry|April 6, 2017
Electronic Structure of a Formal Iron(0) Porphyrin Complex Relevant to CO<sub>2</sub> ReductionChristina Römelt, Jinshuai Song, Maxime Tarrago, et al.Chemical Science|March 6, 2023
Dynamic effects on ligand field from rapid hydride motion in an iron(ii) dimer with an <i>S</i> = 3 ground stateSean F McWilliams, Brandon Q Mercado, K Cory MacLeod, et al.Inorganic Chemistry|April 9, 2019
Enhanced Fe-Centered Redox Flexibility in Fe-Ti Heterobimetallic ComplexesJames T Moore, Sudipta Chatterjee, Maxime Tarrago, et al.Pageof 1