International audienceTime-resolved circular dichroism (TR-CD) is a powerful tool for probing conformational dynamics of biomolecules over large timescales that are crucial for establishing their structure−function relationship. However, such experiments, notably in the femtosecond regime, remain challenging due to their extremely weak signals, prone to polarization artifacts. By using binol and two bridged derivatives (PL1 and PL2) as chiral prototypes, we present here the first comprehensive study of this type in themiddle UV, combining femtosecond TR-CD and quantum mechanical calculations (TD-DFT). We show that excitation of the three compounds induces large variations of their transient CD signals, in sharp contrast to those of their ac...
Recently developed circularly polarized X-ray light sources can probe the ultrafast chiral electroni...
Unravelling the main initial dynamics responsible for chiral recognition is a key stepin the underst...
Many phenomena, including life itself and its biochemical foundations are fundamentally rooted in ch...
International audienceTime-resolved circular dichroism (TR-CD) is a powerful tool for probing confor...
One- and two-photon circular dichroism spectra of R-(+)-1,1\u27-bis (2-naphthol), BINOL, a prototype...
One- and two-photon circular dichroism spectra of R-(+)-1,1′-bis(2- naphthol), BINOL, a prototype sy...
Understanding the chirality of molecular reaction pathways is essential for a broad range of fundame...
Chiral effects appear in a wide variety of natural phenomena and are of fundamental importance in sc...
Conformational dynamics of biomolecules, which can span very large time scales ranging from seconds ...
International audienceConformational changes following photoexcitation of (R)-(+)-1,1′-bi-2-naphthol...
Recently developed circularly polarized X-ray light sources can probe the ultrafast chiral electroni...
Unravelling the main initial dynamics responsible for chiral recognition is a key stepin the underst...
Many phenomena, including life itself and its biochemical foundations are fundamentally rooted in ch...
International audienceTime-resolved circular dichroism (TR-CD) is a powerful tool for probing confor...
One- and two-photon circular dichroism spectra of R-(+)-1,1\u27-bis (2-naphthol), BINOL, a prototype...
One- and two-photon circular dichroism spectra of R-(+)-1,1′-bis(2- naphthol), BINOL, a prototype sy...
Understanding the chirality of molecular reaction pathways is essential for a broad range of fundame...
Chiral effects appear in a wide variety of natural phenomena and are of fundamental importance in sc...
Conformational dynamics of biomolecules, which can span very large time scales ranging from seconds ...
International audienceConformational changes following photoexcitation of (R)-(+)-1,1′-bi-2-naphthol...
Recently developed circularly polarized X-ray light sources can probe the ultrafast chiral electroni...
Unravelling the main initial dynamics responsible for chiral recognition is a key stepin the underst...
Many phenomena, including life itself and its biochemical foundations are fundamentally rooted in ch...