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Chemistry (Weinheim an Der Bergstrasse, Germany)|March 16, 2017
Halogen-Bonding Interactions of Polybrominated Diphenyl Ethers and Thyroid Hormone Derivatives: A Potential Mechanism for the Inhibition of Iodothyronine DeiodinaseEric S Marsan, Craig A BayseChemistry (Weinheim an Der Bergstrasse, Germany)|December 19, 2019
Halogen Bonding Interactions of Polychlorinated Biphenyls and the Potential for Thyroid DisruptionEric S Marsan, Craig A BayseMolecules (Basel, Switzerland)|March 19, 2020
A Halogen Bonding Perspective on Iodothyronine Deiodinase ActivityEric S Marsan, Craig A BayseJournal of Biomolecular Structure & Dynamics|May 17, 2022
In silico insights into the dimer structure and deiodinase activity of type III iodothyronine deiodinase from bioinformatics, molecular dynamics simulations, and QM/MM calculationsEric S Marsan, Ana Dreab, Craig A BayseScientific Reports|September 22, 2020
Thyroxine binding to type III iodothyronine deiodinaseCraig A Bayse, Eric S Marsan, Jenna R Garcia, et al.Inorganic Chemistry|February 28, 2006
Theoretical characterization of the "very rapid" Mo(V) species generated in the oxidation of xanthine oxidaseCraig A BayseJournal of Chemical Theory and Computation|December 4, 2015
Considerations for Reliable Calculation of (77)Se Chemical ShiftsCraig A BayseNew Journal of Chemistry = Nouveau Journal De Chimie|February 20, 2019
Halogen Bonding from the Bonding Perspective with Considerations for Mechanisms of Thyroid Hormone Activation and InhibitionCraig A BaysePhysical Chemistry Chemical Physics : PCCP|January 17, 2025
Stack bonding in pentacene and its derivativesCraig A BayseDalton Transactions (Cambridge, England : 2003)|March 18, 2009
Density-functional theory models of xanthine oxidoreductase activity: comparison of substrate tautomerization and protonationCraig A BaysePageof 6