Spatially separating the conformers of the dipeptide Ac-Phe-Cys-NH$_\text{2}$
Abstract
Atomic-resolution-imaging approaches for single molecules, such as coherent x-ray diffraction at free-electron lasers, require the delivery of high-density beams of identical molecules. However, even very cold beams of biomolecules typically have multiple conformational states populated. We demonstrate the production of very cold () molecular beams of intact dipeptide molecules, which we then spatially separate into the individual populated conformational states. This is achieved using the combination of supersonic expansion laser-desorption vaporisation with electrostatic deflection in strong inhomogeneous fields. This represents the first demonstration of a conformer-separated and rotationally-cold molecular beam of a peptide, and will enable future single biomolecule x-ray diffraction measurements.
Keywords
Cite
@article{arxiv.1805.12396,
title = {Spatially separating the conformers of the dipeptide Ac-Phe-Cys-NH$_\text{2}$},
author = {Nicole Teschmit and Daniel A. Horke and Jochen Küpper},
journal= {arXiv preprint arXiv:1805.12396},
year = {2018}
}