| Literature DB >> 27298209 |
Martin Pitzer1, Gregor Kastirke1, Maksim Kunitski1, Till Jahnke1, Tobias Bauer1, Christoph Goihl1, Florian Trinter1, Carl Schober1, Kevin Henrichs1, Jasper Becht1, Stefan Zeller1, Helena Gassert1, Markus Waitz1, Andreas Kuhlins1, Hendrik Sann1, Felix Sturm1, Florian Wiegandt1, Robert Wallauer1, Lothar Ph H Schmidt1, Allan S Johnson2, Manuel Mazenauer3, Benjamin Spenger3, Sabrina Marquardt4, Sebastian Marquardt4, Horst Schmidt-Böcking1, Jürgen Stohner3, Reinhard Dörner1, Markus Schöffler5, Robert Berger6.
Abstract
The absolute configuration of individual small molecules in the gas phase can be determined directly by light-induced Coulomb explosion imaging (CEI). Herein, this approach is demonstrated for ionization with a single X-ray photon from a synchrotron light source, leading to enhanced efficiency and faster fragmentation as compared to previous experiments with a femtosecond laser. In addition, it is shown that even incomplete fragmentation pathways of individual molecules from a racemic CHBrClF sample can give access to the absolute configuration in CEI. This leads to a significant increase of the applicability of the method as compared to the previously reported complete break-up into atomic ions and can pave the way for routine stereochemical analysis of larger chiral molecules by light-induced CEI.Entities:
Keywords: Coulomb explosion imaging; absolute configuration; chirality; cold target recoil ion momentum spectroscopy; synchrotron radiation
Year: 2016 PMID: 27298209 DOI: 10.1002/cphc.201501118
Source DB: PubMed Journal: Chemphyschem ISSN: 1439-4235 Impact factor: 3.102