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Title: | Synthesis, Structure, and Local Molecular Dynamics for Crystalline Rotors Based on Hecogenin/Botogenin Steroidal Frameworks |
Authors: | Jastrzebska, Izabella Pawlak, Tomasz Arcos Ramos, Rafael Florez Lopez, Edwin Farfán, Norberto Czajkowska Szczykowska, Dorota Maj, Jadwiga Santillan, Rosa Morzycki, Jacek W. Potrzebowski, Marek J. |
Keywords: | Chemical analysis Chemical shift Density functional theory Molecular dynamics Molecular structure Principal component analysis Single crystals X ray diffraction |
Issue Date: | 6-Sep-2016 |
Publisher: | American Chemical Society |
Abstract: | The synthesis and solid-state characterization of a series of cyclic/acyclic molecular rotors derived from naturally occurring steroidal 12-oxosapogenins are described. The bridged molecular rotors with rigid steroidal frameworks were obtained by employing ring-closing metathesis (RCM) as a key step. The X-ray diffraction technique was employed for determination and refinement of the crystal and molecular structure of selected models giving good quality single crystals. In the case of the bridged hecogenin molecular rotor 11E for which poor quality crystals were obtained, an NMR crystallography approach was used for fine refinement of the structure. Solid state NMR spectroscopic techniques were applied for the study of local molecular dynamics of the featured acyclic/cyclic molecular rotors. Analysis of 13C principal components of chemical shift tensors and chemical shift anisotropy (CSA) as well as heteronuclear 1H–13C dipolar couplings (DC) unambiguously proved that aromatic rings located in the space within the rigid steroidal framework both for cyclic and acyclic rotors are under kHz exchange regime. Experimental results were confirmed by theoretical calculations of rotation barrier on the density functional theory level. Small distinctions in the values of CSA and DC for the rotors under investigation are explained on the basis of differences in their molecular structures. |
URI: | https://repository.usc.edu.co/handle/20.500.12421/2786 |
ISSN: | 15287483 |
Appears in Collections: | Artículos Científicos |
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