Hugo Vazquez-Lima
Affiliations: | Department of Chemistry | UiT - The Arctic University of Norway |
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Parents
Sign in to add mentorAbhik Ghosh | post-doc | 2013-2016 | UiT - The Arctic University of Norway | |
(Also current collaborator) |
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Publications
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Terner J, Thomas KE, Vazquez-Lima H, et al. (2022) Structure-sensitive marker bands of metallocorroles: A resonance Raman study of manganese and gold corrole derivatives. Journal of Inorganic Biochemistry. 231: 111783 |
Conradie J, Vazquez-Lima H, Alemayehu AB, et al. (2021) Comparing Isoelectronic, Quadruple-Bonded Metalloporphyrin and Metallocorrole Dimers: Scalar-Relativistic DFT Calculations Predict a >1 eV Range for Ionization Potential and Electron Affinity. Acs Physical Chemistry Au. 2: 70-78 |
Jeon H, Vazquez-Lima H, Jeong H, et al. (2021) Mono- and dinuclear zinc complexes bearing identical bis(thiosemicarbazone) ligand that exhibit alkaline phosphatase-like catalytic reactivity. Journal of Biological Inorganic Chemistry : Jbic : a Publication of the Society of Biological Inorganic Chemistry |
Vazquez-Lima H, Conradie J, Johansen MAL, et al. (2021) Heavy-element-ligand covalence: ligand noninnocence in molybdenum and tungsten Viking-helmet Corroles. Dalton Transactions (Cambridge, England : 2003) |
Rahman MH, Ryan MD, Vazquez-Lima H, et al. (2020) Infrared Spectroelectrochemistry of Iron-Nitrosyl Triarylcorroles. Implications for Ligand Noninnocence. Inorganic Chemistry |
Alemayehu AB, Vazquez-Lima H, Teat SJ, et al. (2019) Unexpected Molecular Structure of a Putative Rhenium-Dioxo-Benzocarbaporphyrin Complex. Implications for the Highest Transition Metal Valence in a Porphyrin-Type Ligand Environment. Chemistryopen. 8: 1298-1302 |
Alemayehu AB, McCormick LJ, Vazquez-Lima H, et al. (2019) Relativistic Effects on a Metal-Metal Bond: Osmium Corrole Dimers. Inorganic Chemistry |
Demissie TB, Conradie J, Vazquez-Lima H, et al. (2018) Rare and Nonexistent Nitrosyls: Periodic Trends and Relativistic Effects in Ruthenium and Osmium Porphyrin-Based {MNO} Complexes. Acs Omega. 3: 10513-10516 |
Thomas KE, McCormick LJ, Carrié D, et al. (2018) Halterman Corroles and Their Use as a Probe of the Conformational Dynamics of the Inherently Chiral Copper Corrole Chromophore. Inorganic Chemistry |
Schies C, Alemayehu AB, Vazquez-Lima H, et al. (2017) Metallocorroles as inherently chiral chromophores: resolution and electronic circular dichroism spectroscopy of a tungsten biscorrole. Chemical Communications (Cambridge, England) |