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Journal of Chemical Theory and Computation|October 18, 2021
Tumuc1: A New Accurate DNA Force Field Consistent with High-Level Quantum ChemistryKorbinian Liebl, Martin Zacharias
Journal of Chemical Theory and Computation|February 16, 2023
Toward Force Fields with Improved Base Stacking DescriptionsKorbinian Liebl, Martin Zacharias
Nucleic Acids Research|December 13, 2018
How methyl-sugar interactions determine DNA structure and flexibilityKorbinian Liebl, Martin Zacharias
The Journal of Physical Chemistry. B|October 25, 2017
Unwinding Induced Melting of Double-Stranded DNA Studied by Free Energy SimulationsKorbinian Liebl, Martin Zacharias
Biophysical Journal|December 21, 2022
The development of nucleic acids force fields: From an unchallenged past to a competitive futureKorbinian Liebl, Martin Zacharias
Proceedings of the National Academy of Sciences of the United States of America|April 20, 2021
Accurate modeling of DNA conformational flexibility by a multivariate Ising modelKorbinian Liebl, Martin Zacharias
The Journal of Physical Chemistry. B|December 20, 2021
Orientation Dependence of DNA Blunt-End Stacking Studied by Free-Energy SimulationsUlrich Grupa, Korbinian Liebl, Martin Zacharias
Biophysical Chemistry|June 16, 2023
Coupling of conformation and CPD damage in nucleosomal DNAAsmar Nayis, Korbinian Liebl, Martin Zacharias
Biophysical Journal|December 7, 2020
Targeting Telomeres: Molecular Dynamics and Free Energy Simulation of Gold-Carbene Binding to DNAAsmar Nayis, Korbinian Liebl, Christina V Frost, et al.
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