Using laser-induced Coulomb explosion of aligned chiral molecules to determine their absolute configuration
The absolute configuration of chiral molecules in the gas phase is determined by femtosecond laser-induced Coulomb explosion and recording of the emission direction of critical ionic fragments. The spatial orientation of the 3,5-dibromo-3′,5′-diflouro-4′-cyanobiphenyl molecules studied is determined...
Autors principals: | Christensen, L, Nielsen, J, Slater, C, Lauer, A, Brouard, M, Stapelfeldt, H |
---|---|
Format: | Journal article |
Publicat: |
American Physical Society
2015
|
Ítems similars
-
Communication: Three-fold covariance imaging of laser-induced Coulomb explosions.
per: Pickering, J, et al.
Publicat: (2016) -
Communication: Gas-phase structural isomer identification by Coulomb explosion of aligned molecules
per: Burt, M, et al.
Publicat: (2018) -
Coulomb-explosion imaging using a pixel-imaging mass-spectrometry camera
per: Slater, C, et al.
Publicat: (2015) -
Alignment, orientation, and Coulomb explosion of difluoroiodobenzene studied with the pixel imaging mass spectrometry (PImMS) camera
per: Amini, K, et al.
Publicat: (2017) -
Dissociation of multiply charged ICN by Coulomb explosion
per: Eland, J, et al.
Publicat: (2016)