Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular rotary motors in nanoscale machines. Here the excited-state dynamics and structural evolution of the prototypical light-driven rotary motor are followed on the ultrafast time scale by femtosecond stimulated Raman spectroscopy (FSRS) and transient absorption (TA). TA reveals a sub-100-fs blue shift and decay of the Franck–Condon bright state arising from relaxation along the reactive potential energy surface. The decay is accompanied by coherently excited vibrational dynamics which survive the excited-state structural evolution. The ultrafast Franck–Condon bright state relaxes to a dark excited state, which FSRS reveals to have a rich spectrum...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
The design of unidirectional photomolecular motors demands a critical understanding of an ultrafast ...
The design of unidirectional photomolecular motors demands a critical understanding of an ultrafast ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
Femtosecond Stimulated Raman Spectroscopy (FSRS) reports on structure and dynamics of excited states...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
The design of unidirectional photomolecular motors demands a critical understanding of an ultrafast ...
The design of unidirectional photomolecular motors demands a critical understanding of an ultrafast ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Photochemical isomerization in sterically crowded chiral alkenes is the driving force for molecular ...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
Femtosecond Stimulated Raman Spectroscopy (FSRS) reports on structure and dynamics of excited states...
Unidirectional molecular rotors based on chiral overcrowded alkenes operate via sequential photochem...
The design of unidirectional photomolecular motors demands a critical understanding of an ultrafast ...
The design of unidirectional photomolecular motors demands a critical understanding of an ultrafast ...