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Wang Y, Voth GA. Tail Aggregation and Domain Diffusion in Ionic Liquids. J Phys Chem B. 2006 ;110:18601-8.
Jin J, Yu A, Voth GA. Temperature and Phase Transferable Bottom-up Coarse-Grained Models. J. Chem. Theory Comp. 2020 ;16(11):6823–6842.
Vath P, Zimmt MB, Matyushov DV, Voth GA. Temperature Dependence of the Solvent Reorganization Energy of Electron Transfer in Highly Polar Solvents. J. Phys. Chem. B. 1999 ;103:9130-9140.
Koper MTM, Voth GA. A Theory for Adiabatic Bond Breaking Electron Transfer Reactions at Metal Electrodes. Chem. Phys. Lett. 1998 ;282:100-106.
Boroda YG, Voth GA. A Theory for Adiabatic Electron Transfer Processes across the Semiconductor/Electrolyte Interface. The Journal of Chemical Physics. 1996 ;104:6168-6183.
Boroda YG, Calhoun A, Voth GA. A Theory for Electron Transfer across the Electrode/Electrolyte Interface Involving more than One Redox Ion. The Journal of Chemical Physics. 1997 ;107:8940-8954.
Boroda Y, Voth GA. A Theory for Electron Transfer between an Electrode and a Multilevel Acceptor/Donor Species in an Electrolyte Solution. J. Electroanal. Chem. 1998 ;450:95-107.
Cao J, Voth GA. A Theory for the Quantum Activated Rate Constant in Dissipative Systems. Chem. Phys. Lett. 1996 ;261:111-116.
Haynes GR, Voth GA, Pollak E. A Theory for the Thermally Activated Rate Constant in Systems with Spatially Dependent Friction. Chem. Phys. Lett. 1993 ;207:309-316.
Cao J, Voth GA. A Theory for Time Correlation Functions in Liquids. The Journal of Chemical Physics. 1995 ;103:4211-4220.
Voth GA. A Theory for Treating Spatially-dependent Friction in Classical Activated Rate Processes. The Journal of Chemical Physics. 1992 ;97:5908-5910.
Matyushov DV, Voth GA. A Theory of Electron Transfer and Steady-State Optical Spectra of Chromophores with Varying Electronic Polarizability. The Journal of Physical Chemistry A. 1999 ;103:10981-10992.
Small DW, Matyushov DV, Voth GA. The Theory of Electron Transfer Reactions:  What May Be Missing?. J Am Chem Soc. 2003 ;125:7470-8.
Dama JF, Sinitskiy AV, McCullagh M, Weare J, Roux B, Dinner AR, Voth GA. Theory of Ultra Coarse-Graining. I. General Principles. J. Chem. Theor. Comp. 2013 ;9:2466−2480.
Davtyan A, Dama JF, Sinitskiy AV, Voth GA. The Theory of Ultra-Coarse-Graining. 2. Numerical Implementation. J. Chem. Theory Comp. . 2014 ;10:5265-5275.
Dama JF, Jin J, Voth GA. The Theory of Ultra-Coarse-Graining. 3. Coarse-grained Sites with Rapid Local Equilibrium of Internal States. J. Chem. Theory Comput. 2017 ;13.
Koper MTM, Voth GA. A Three-dimensional Potential Energy Surface for Dissociative Adsorption and Associative Desorption at Metal Electrodes. The Journal of Chemical Physics. 1998 ;109:1991-2001.
Voth GA, Chandler D, Miller WH. Time Correlation Function and Path Integral Analysis of Quantum Rate Constants. The Journal of Physical Chemistry. 1989 ;93:7009-7015.
Wang Y, Feng S, Voth GA. Transferable Coarse-Grained Models for Ionic Liquids. J. Chem. Theor. Comp. 2009 ;5:1091-1098.
Paramore S, Ayton GS, Voth GA. Transient Violations of the Second Law of Thermodynamics in Protein Unfolding Examined using Synthetic Atomic Force Microscopy and the Fluctuation Theorem. J. Chem. Phys. 2007 ;127:105105.
Kratochvil HT, Watkins LC, Mravic M, Thomaston JL, Nicoludis JM, Liu L, Voth GA, DeGrado WF. Transient Water Wires Mediate Selective Proton Conduction in Designed Channel Proteins. Nat. Chem. Submitted .
Voth GA, Hochstrasser RM. Transition State Dynamics and Relaxation Processes in Solutions: A Frontier of Physical Chemistry. The Journal of Physical Chemistry. 1996 ;100:13034-13049.
Sun R, Dama JF, Tan JS, Rose JP, Voth GA. Transition-Tempered Metadynamics is a Promising Tool for Studying the Permeation of Drug-like Molecules through Membranes. J. Chem. Theory Comp. . 2016 .
Dama JF, Rotskoff J, Parrinello M, Voth GA. Transition-Tempered Metadynamics: Robust, Convergent Metadynamics via On-The-Fly Transition Barrier Estimation. J. Chem. Theor. Comp. 2014 .
Yu A, Skorupka K, Pak AJ, Ganser-Pornillos BK, Pornillos O, Voth GA. TRIM5α Self-Assembly and Compartmentalization of the HIV-1 Viral Capsid. Nature Comm. 2020 ;11:1-10.