The search result changed since you submitted your search request. Documents might be displayed in a different sort order.
  • search hit 12 of 134
Back to Result List

Configuration and E/Z interconversion mechanism of O(S)-allyl-S(O)-methyl-N-(acridin-9-yl)iminothiocarbonate

  • The configuration and dynamic behavior of O-allyl-S-methyl-N-(acridin-9-yl)iminothiocarbonate (1) and its S- allyl-O-methyl regioisomer (2) were studied using quantum chemical calculations and by applying a novel graphical method to scatter maps obtained from MD simulations for evaluation of an NOE-weighted internuclear distance (r(NOE)). Energy calculations indicated that the Z configuration was predominant for each compound and, further, this was supported both by the calculated chemical shifts and the rNOE. Both N-inversion- and rotation-type transition-state structures were also calculated for the E/Z isomerization process, the results indicating that the preferred interconversion mechanism for 1 is N-inversion, but contrastingly, interconversion via rotation is equally as probable as N-inversion for 2. This supports the notion that one or the other or both pathways can be active and each system needs to be assessed on a case- by-case basis. Copyright (c) 2005 John Wiley & Sons, Ltd

Export metadata

Additional Services

Search Google Scholar Statistics
Metadaten
Author details:Karel D. Klinka, Jan Imrich, I. Danihel, Stanislav Bohm, Pavol Kristian, S. Harnul'akova, Kalevi Pihlaja, Andreas KochORCiDGND, Erich KleinpeterORCiDGND
ISSN:0749-1581
Publication type:Article
Language:English
Year of first publication:2005
Publication year:2005
Release date:2017/03/24
Source:Magnetic Resonance in Chemistry. - ISSN 0749-1581. - 43 (2005), 5, S. 380 - 388
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
Peer review:Referiert
Accept ✔
This website uses technically necessary session cookies. By continuing to use the website, you agree to this. You can find our privacy policy here.