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The Journal of Physical Chemistry. B|February 8, 2012
Proton transport pathways in [NiFe]-hydrogenaseIsaiah Sumner, Gregory A VothThe Journal of Chemical Physics|June 21, 2011
The multiscale coarse-graining method. VII. Free energy decomposition of coarse-grained effective potentialsLanyuan Lu, Gregory A VothBiophysical Journal|July 8, 2009
Proton transport pathway in the ClC Cl-/H+ antiporterDong Wang, Gregory A VothBiophysical Journal|May 16, 2020
Microtubule Simulations Provide Insight into the Molecular Mechanism Underlying Dynamic InstabilityDudu Tong, Gregory A VothJournal of Chemical Theory and Computation|September 1, 2021
Using Constrained Density Functional Theory to Track Proton Transfers and to Sample Their Associated Free Energy SurfaceChenghan Li, Gregory A VothThe Journal of Physical Chemistry Letters|February 2, 2023
Statistical Mechanical Design Principles for Coarse-Grained Interactions across Different Conformational Free Energy SurfacesJaehyeok Jin, Gregory A VothJournal of the American Chemical Society|September 1, 2005
Unique spatial heterogeneity in ionic liquidsYanting Wang, Gregory A VothBiophysical Journal|July 26, 2005
A computational study of the closed and open states of the influenza a M2 proton channelYujie Wu, Gregory A VothThe Journal of Chemical Physics|October 25, 2006
Modeling real dynamics in the coarse-grained representation of condensed phase systemsSergei Izvekov, Gregory A VothThe Journal of Physical Chemistry. B|March 10, 2009
Solvent-free lipid bilayer model using multiscale coarse-grainingSergei Izvekov, Gregory A VothPageof 49