Time-resolved anti-Stokes Raman spectroscopy is selective for vibrationally excited modes, and it is therefore a powerful method for measuring vibrational energy relaxation.1-2 The intensity ratio of anti-Stokes and Stokes scattering is expected to provide the most direct information about relative vibrational populations. Here, we applied this technique to explore the vibrational energy relaxation of heme in the globin matrix upon ligand photodissociation of Scapharca inaequivalvis dimeric hemoglobin (HbI).Published versio
The reaction pathway in photoexcited hemeproteins (ligand dissociation, energy redistribution and st...
International audienceUltrafast time-resolved resonance Raman spectra of carbonmonoxy hemoglobin (Hb...
We report pump-probe picosecond Raman experiments on oxy- and deoxyhemoglobin (oxyHb and deoxyHb, re...
We have directly observed the ultrafast vibrational dynamics in photoexcited deoxyhemoglobin. These ...
We have directly observed hot vibrations in photoexcited deoxyhemoglobin. The data quantitatively in...
Protein dynamics of isolated chains of recombinant human adult hemoglobin (rHb) following ligand pho...
Identifying the structural rearrangements during photoinduced reactions is a fundamental challenge f...
© 1893 SPIE. Transient picosecond Raman spectroscopy is capable of differentiating vibrational relax...
International audienceIdentifying the structural rearrangement and the active sites in photo-induced...
International audienceDetermining the initial pathway for ultrafast energy redistribution within bio...
In a previous molecular dynamics simulation study, the kinetic energy relaxation of photolyzed heme ...
Resonance Raman spectra at cryogenic temperatures of photodissociated hemoglobins and the correspond...
AbstractUltrafast time-resolved resonance Raman spectra of carbonmonoxy hemoglobin (Hb), nitroxy Hb,...
The reaction pathway in photoexcited hemeproteins (ligand dissociation, energy redistribution and st...
International audienceUltrafast time-resolved resonance Raman spectra of carbonmonoxy hemoglobin (Hb...
We report pump-probe picosecond Raman experiments on oxy- and deoxyhemoglobin (oxyHb and deoxyHb, re...
We have directly observed the ultrafast vibrational dynamics in photoexcited deoxyhemoglobin. These ...
We have directly observed hot vibrations in photoexcited deoxyhemoglobin. The data quantitatively in...
Protein dynamics of isolated chains of recombinant human adult hemoglobin (rHb) following ligand pho...
Identifying the structural rearrangements during photoinduced reactions is a fundamental challenge f...
© 1893 SPIE. Transient picosecond Raman spectroscopy is capable of differentiating vibrational relax...
International audienceIdentifying the structural rearrangement and the active sites in photo-induced...
International audienceDetermining the initial pathway for ultrafast energy redistribution within bio...
In a previous molecular dynamics simulation study, the kinetic energy relaxation of photolyzed heme ...
Resonance Raman spectra at cryogenic temperatures of photodissociated hemoglobins and the correspond...
AbstractUltrafast time-resolved resonance Raman spectra of carbonmonoxy hemoglobin (Hb), nitroxy Hb,...
The reaction pathway in photoexcited hemeproteins (ligand dissociation, energy redistribution and st...
International audienceUltrafast time-resolved resonance Raman spectra of carbonmonoxy hemoglobin (Hb...
We report pump-probe picosecond Raman experiments on oxy- and deoxyhemoglobin (oxyHb and deoxyHb, re...