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List of works by Stephanie H Carpenter

A Physical-Inorganic Approach for the Elucidation of Active Iron Species and Mechanism in Iron-Catalyzed Cross-Coupling.

scientific article published on 24 August 2017

Crystal structure of bromido-penta-kis-(tetra-hydro-furan-κ)magnesium bis-[1,2-bis-(di-phenyl-phosphan-yl)benzene-κ,']cobaltate(-1) tetra-hydro-furan disolvate

scientific article published on 31 January 2019

Crystal structures of two new six-coordinate iron(III) complexes with 1,2-bis(diphenylphosphane) ligands.

scientific article published on 15 May 2018

Facile hydrogen atom transfer to iron(iii) imido radical complexes supported by a dianionic pentadentate ligand.

scientific article published on 31 May 2016

Identification and Reactivity of Cyclometalated Iron(II) Intermediates in Triazole-Directed Iron-Catalyzed C-H Activation

scientific article published on 24 July 2019

Intermediates in base metal catalysis for organic transformations: cross-coupling and C-H functionalization

2019 doctoral thesis by Stephanie H Carpenter at the University of Rochester

Manipulating Magneto-Optic Properties of a Chiral Polymer by Doping with Stable Organic Biradicals

scientific article published on 12 August 2016

Multinuclear iron-phenyl species in reactions of simple iron salts with PhMgBr: identification of Fe4(μ-Ph)6(THF)4 as a key reactive species for cross-coupling catalysis

scientific article published on 24 August 2018

Nitric oxide activation facilitated by cooperative multimetallic electron transfer within an iron-functionalized polyoxovanadate–alkoxide cluster

scientific article published on 2 July 2018

Polyoxovanadate-Alkoxide Clusters as a Redox Reservoir for Iron.

scientific article published on 26 May 2017

The Effect of β-Hydrogen Atoms on Iron Speciation in Cross-Couplings with Simple Iron Salts and Alkyl Grignard Reagents

scientific article published on 29 January 2019

The N-Methylpyrrolidone (NMP) Effect in Iron-Catalyzed Cross-Coupling with Simple Ferric Salts and MeMgBr.

scientific article published on 6 April 2018