Area of research
Statistical and Nonlinear Physics · Atomic and Molecular Physics, and Optics
Research interest
Research focused on Molecular machine and Affinities, with related work in Hydrazone, Statistical physics, Parametrization (atmospheric modeling). Notable publications include 'Individual‐Molecule Perspective Analysis of Chemical Reaction Networks: The Case of a Light‐Driven Supramolecular Pump', 'Toward quantitative estimates of binding affinities for protein–ligand systems involving large inhibitor compounds: A steered molecular dynamics simulation route', and 'ATP Drives the Formation of a Catalytic Hydrazone through an Energy Ratchet Mechanism'.
ATP Drives the Formation of a Catalytic Hydrazone through an Energy Ratchet Mechanism
Individual‐Molecule Perspective Analysis of Chemical Reaction Networks: The Case of a Light‐Driven Supramolecular Pump
Remarks on the chemical Fokker-Planck and Langevin equations: Nonphysical currents at equilibrium
Conformational Mobility in Monolayer-Protected Nanoparticles: From Torsional Free Energy Profiles to NMR Relaxation
Toward quantitative estimates of binding affinities for protein–ligand systems involving large inhibitor compounds: A steered molecular dynamics simulation route