This submission belongs to the session e. Computational Chemistry of the event The 16th International Electronic Conference on Synthetic Organic Chemistry
Published date
30 Oct, 2012
Citation
Akın Azizoglu, Cem Burak yildiz, DFT Study on The Structural Properties of Germacyclopropylidenoids, in Proceedings of The 16th International Electronic Conference on Synthetic Organic Chemistry, 1 November–30 November 2012, MDPI: Basel, Switzerland, doi: 10.3390/ecsoc-16-01074
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DFT Study on The Structural Properties of Germacyclopropylidenoids
Cem Burak yildiz 1,2
Akın Azizoglu 2
1. Department of Chemistry, University of Aksaray, TR-68100, Aksaray, Turkey
2. Laboratory of Computational Chemistry, Department of Chemistry, University of Balikesir, TR-10145, Balikesir, Turkey
Abstract
DFT (B3LYP) levels of theory using 6-31+G(d,p) basis set have been carried out to investigate the Isomeric structures, energies and properties of LiBr-germacyclopropylidenoids. The theoretical calculations depict that 1 ,3, and 5 have two stationary structures: germanoidal (G), and inverted (I). On the other hand, 2 and 4 have only one stationary structure, germanoidal (G). We also obtained no tetrahedral (T) structure as a minimum for all of the germacyclopropylidenoids. Inverted (I) forms are energetically more stable than germanoidal (G) forms for 3 and 5, whereas stability of germanoidal (G) form higher than inverted (I) form for 1. Moreover, natural bond orbitals (NBO), frontier molecular orbitals (FMO), and molecular electrostatic potential maps (MEP) were achieved in this computational study.
Keywords
DFT
germacyclopropylidenoids
reactive intermediates
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