Photoelectron Circular Dichroism as a Signature of
Subtle Conformational Changes: The Case of Ring Inversion in 1‑Indanol
Posted on 2022-03-04 - 17:39
Chirality plays a fundamental role
in the molecular recognition
processes. Molecular flexibility is also crucial in molecular recognition,
allowing the interacting molecules to adjust their structures and
hence optimize the interaction. Methods probing simultaneously chirality
and molecular conformation are therefore crucially needed. Taking
advantage of a possible control in the gas phase of the conformational
distribution between the equatorial and axial conformers resulting
from a ring inversion in jet-cooled 1-indanol, we demonstrate here
the sensitivity of valence-shell photoelectron circular dichroism
(PECD) to both chirality and subtle conformational changes, in a case
where the photoelectron spectra of the two conformers are identical.
For the highest occupied orbital, we observe a dramatic inversion
of the PECD-induced photoelectron asymmetries, while the photoionization
cross-section and usual anisotropy (β) parameter are completely
insensitive to conformational isomerism. Such a sensitivity is a major
asset for the ongoing developments of PECD-based techniques as a sensitive
chiral (bio)chemical analytical tool in the gas phase.
CITE THIS COLLECTION
DataCiteDataCite
No result found
Dupont, Jennifer; Lepère, Valéria; Zehnacker, Anne; Hartweg, Sebastian; Garcia, Gustavo A.; Nahon, Laurent (2022). Photoelectron Circular Dichroism as a Signature of
Subtle Conformational Changes: The Case of Ring Inversion in 1‑Indanol. ACS Publications. Collection. https://doi.org/10.1021/acs.jpclett.2c00074