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The Journal of Physical Chemistry. B|July 23, 2026
A High-Potential Redox Landscape Bump Enhances Electron Bifurcation EfficiencyEmily Y Wang, Andrew J Smith, David N BeratanChemical Science|January 28, 2026
A theoretical framework to understand high electron mobilities in cable bacteriaAndrew J Smith, David N BeratanChemical Science|April 2, 2026
Correction: A theoretical framework to understand high electron mobilities in cable bacteriaAndrew J Smith, David N BeratanAnnual Review of Physical Chemistry|February 7, 2019
Why Are DNA and Protein Electron Transfer So Different?David N BeratanJournal of Inorganic Biochemistry|December 21, 2025
From single step hops to emergent biological phenomenaAndrew J Smith, Cadmus D Chen, Bochu Wang, et al.The Journal of Physical Chemistry. B|July 21, 2006
Simulation of electron transfer between cytochrome C2 and the bacterial photosynthetic reaction center: Brownian dynamics analysis of the native proteins and double mutantsJianping Lin, David N BeratanBiophysical Journal|August 10, 2004
How does protein architecture facilitate the transduction of ATP chemical-bond energy into mechanical work? The cases of nitrogenase and ATP binding-cassette proteinsJie-Lou Liao, David N BeratanThe Journal of Physical Chemistry. B|September 8, 2024
Undulating Free Energy Landscapes Buffer Redox Chains from Environmental FluctuationsKelsey A Parker, David N BeratanThe Journal of Chemical Physics|August 7, 2008
Inverse molecular design in a tight-binding frameworkDequan Xiao, Weitao Yang, David N BeratanChemical Science|September 12, 2025
The influence of protein electrostatics on potential inversion in flavoproteinsNiven Singh, Peng Zhang, David N BeratanPageof 37