Journal article
Dynamical (e,2e) investigations of tetrahydrofuran and tetrahydrofurfuryl alcohol as DNA analogues
Chemical Physics Letters, Vol.572, pp.32-37
2013
Abstract
Triple differential cross section measurements for the electron-impact ionization of the highest occupied molecular orbital of tetrahydrofuran (THF) are reported. Experimental measurements were performed using the (e,2e) technique in asymmetric coplanar kinematics with an incident electron energy of 250eV and an ejected electron energy of 20eV. With the scattered electrons being detected at -5°, the angular distribution of the ejected electrons was observed. These measurements are compared with calculations performed within the molecular 3-body distorted wave (M3DW) model, and against previous measurements on THF and tetrahydrofurfuryl alcohol to further understand the role that kinematics and structure play in electron-impact ionization.
Details
- Title
- Dynamical (e,2e) investigations of tetrahydrofuran and tetrahydrofurfuryl alcohol as DNA analogues
- Authors
- D B Jones (Author) - Flinders UniversityJ D Builth-Williams (Author) - Flinders UniversityS M Bellm (Author) - Flinders UniversityL Chiari (Author) - Flinders UniversityH Chaluvadi (Author) - Missouri University of Science and Technology, United StatesD H Madison (Author) - Missouri University of Science and Technology, United StatesC G Ning (Author) - Tsinghua University, ChinaBirgit Lohmann (Author) - University of the Sunshine CoastO Ingolfosson (Author) - University of Iceland, IcelandM J Brunger (Author) - Flinders University
- Publication details
- Chemical Physics Letters, Vol.572, pp.32-37
- Publisher
- Elsevier BV
- Date published
- 2013
- DOI
- 10.1016/j.cplett.2013.04.028
- ISSN
- 0009-2614; 0009-2614
- Copyright note
- Copyright © 2013. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/
- Organisation Unit
- Office of the Deputy Vice-Chancellor (Academic); University of the Sunshine Coast, Queensland; Thompson Institute
- Language
- English
- Record Identifier
- 99449104402621
- Output Type
- Journal article
- Research Statement
- false
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