Area of research
Cellular and Molecular Neuroscience · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Chemistry, Chromophore, Protonation, Rhodopsin, Biophysics, and Photoisomerization.
Embedding Nonrigid Solutes in an Averaged Environment: A Case Study on Rhodopsins
Rhodopsin-bestrophin fusion proteins from unicellular algae form gigantic pentameric ion channels
Ultrafast proton-coupled isomerization in the phototransformation of phytochrome
Deciphering the Spectral Tuning Mechanism in Proteorhodopsin: The Dominant Role of Electrostatics Instead of Chromophore Geometry
Structures of the archaerhodopsin-3 transporter reveal that disordering of internal water networks underpins receptor sensitization
Bridged Aromatic Oxo‐ and Thioethers with Intense Emission in Solution and the Solid State
Structural Factors Determining the Absorption Spectrum of Channelrhodopsins: A Case Study of the Chimera C1C2
Embedding non-rigid solutes in an averaged environment: a case study on rhodopsins
NeoR, a near-infrared absorbing rhodopsin
Frontiers in Multiscale Modeling of Photoreceptor Proteins
Intramolecular Proton Transfer Controls Protein Structural Changes in Phytochrome
Modulation of Light Energy Transfer from Chromophore to Protein in the Channelrhodopsin ReaChR
Ultrafast Backbone Protonation in Channelrhodopsin-1 Captured by Polarization Resolved Fs Vis-pump—IR-Probe Spectroscopy and Computational Methods
Structural Factors Determining the Absorption Spectrum of Channelrhodopsins: A Case Study of the Chimera C1C2
Revised CHARMM force field parameters for iron‐containing cofactors of photosystem II