Intermediate neglect of differential overlap INDO calculations were used to study the structure of C CH . It was found that the CH group is mainly added to the C αC 70 2 2 I II Ε½ . C represents the first kind of carbon atom and so on or the C αC bond in C and I III III 70 a cyclopropane feature with
Theoretical Studies on Electronic Structures and NMR Spectra of Oligo(4-vinylpyridine)
β Scribed by Hongjian Zhao; Jia Zhou; Lingjing Hu; Qiwen Teng
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 78 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0256-7660
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β¦ Synopsis
Abstract
Poly(4βvinylpyridine) was determined to possess conductivity in the experiment. In order to understand properties of the polymer, a series of 4βvinylpyridine oligomers were designed. The structures of these oligomers were optimized using density function theory (DFT) at B3LYP/6β31G(d) level. The energy gaps and thermal stabilities of the oligomers were decreased when the chain lengths were increased. These properties were also decreased owing to the protonation of the pyridine ring. The holes were easily injected into the oligomers in the presence of hydrochloride. The electrons were conducted in the side chain composed of the pyridine rings rather than the main chain owing to the saturation of the main chain. The ^13^C nuclear magnetic resonance (NMR) spectra and nucleus independent chemical shifts (NICS) of these compounds were calculated at B3LYP/6β31G(d) level. The chemical shifts of the carbon atoms connected with the nitrogen atoms in the protonated pyridines were moved upfield in comparison with those of the pyridines. The addition of hydrochloride on the pyridine ring in the oligomers led to the increase of the aromaticities, namely the aromaticities of the oligomers were obviously improved when the pyridine rings were protonated.
π SIMILAR VOLUMES
Intermediate neglect of differential overlap INDO method was used to Ε½ . study the structures and the electronic spectra of C M M s Li, Na, Be . The 60 12 Ε½ . calculations indicate that in the minimal energy configuration of C M M s Li, Na 60 12 the C cage still retains I symmetry and the 12 Li or N
Possible isomers of Buckminsterfullerene derivatives C O and C O 60 2 60 3 are studied with the semiempirical quantum mechanical INDO method. The C O 60 2 isomer of C symmetry, where the epoxy oxygen atoms are on the 6α6 bond of a s hexagon, is found most stable. The C O isomer of C symmetry with a