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Substituent effects on cyclic electron delocalization in symmetric B- and N- trisubstituted borazine derivatives

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2013
1246.pdf (351.0Kb)
Authors
Baranac-Stojanović, Marija
Stojanović, Milovan
Article (Published version)
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Abstract
Aromaticity is an important concept in chemistry, useful to rationalize structure, physical properties and chemical behaviour of molecules. Aromaticity of an inorganic relative of benzene, borazine, has been the topic of a number of studies which resulted in its description as weakly aromatic or nonaromatic. However, influence of substituents on its aromatic character is poorly understood. This study shows that an appropriate choice of aromaticity indices can establish a connection between substituent effects and aromaticity of the ring. The changes in cyclic pi electron delocalization (aromaticity) were traced by means of the most refined NICS(0)(pi zz) index, the electron delocalization-based index PDI and extra cyclic resonance energy ECRE, computed by using the Natural Bond Orbital (NBO) method. Although various indices often do not correlate well with each other, owing to the multidimensional nature of aromaticity, these three indices agreed quite well. However, the HOMA index fai...led to give reliable information in this case.

Source:
RSC Advances, 2013, 3, 46, 24108-24117
Publisher:
  • Royal Soc Chemistry, Cambridge
Funding / projects:
  • Experimental and theoretical study of reactivity and biological activity of stereodefined thiazolidines and their synthetic analogues (RS-172020)

DOI: 10.1039/c3ra44189j

ISSN: 2046-2069

WoS: 000326745100037

Scopus: 2-s2.0-84887336526
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11
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URI
https://cer.ihtm.bg.ac.rs/handle/123456789/1248
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  • Radovi istraživača / Researchers' publications
Institution/Community
IHTM
TY  - JOUR
AU  - Baranac-Stojanović, Marija
AU  - Stojanović, Milovan
PY  - 2013
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/1248
AB  - Aromaticity is an important concept in chemistry, useful to rationalize structure, physical properties and chemical behaviour of molecules. Aromaticity of an inorganic relative of benzene, borazine, has been the topic of a number of studies which resulted in its description as weakly aromatic or nonaromatic. However, influence of substituents on its aromatic character is poorly understood. This study shows that an appropriate choice of aromaticity indices can establish a connection between substituent effects and aromaticity of the ring. The changes in cyclic pi electron delocalization (aromaticity) were traced by means of the most refined NICS(0)(pi zz) index, the electron delocalization-based index PDI and extra cyclic resonance energy ECRE, computed by using the Natural Bond Orbital (NBO) method. Although various indices often do not correlate well with each other, owing to the multidimensional nature of aromaticity, these three indices agreed quite well. However, the HOMA index failed to give reliable information in this case.
PB  - Royal Soc Chemistry, Cambridge
T2  - RSC Advances
T1  - Substituent effects on cyclic electron delocalization in symmetric B- and N- trisubstituted borazine derivatives
VL  - 3
IS  - 46
SP  - 24108
EP  - 24117
DO  - 10.1039/c3ra44189j
ER  - 
@article{
author = "Baranac-Stojanović, Marija and Stojanović, Milovan",
year = "2013",
abstract = "Aromaticity is an important concept in chemistry, useful to rationalize structure, physical properties and chemical behaviour of molecules. Aromaticity of an inorganic relative of benzene, borazine, has been the topic of a number of studies which resulted in its description as weakly aromatic or nonaromatic. However, influence of substituents on its aromatic character is poorly understood. This study shows that an appropriate choice of aromaticity indices can establish a connection between substituent effects and aromaticity of the ring. The changes in cyclic pi electron delocalization (aromaticity) were traced by means of the most refined NICS(0)(pi zz) index, the electron delocalization-based index PDI and extra cyclic resonance energy ECRE, computed by using the Natural Bond Orbital (NBO) method. Although various indices often do not correlate well with each other, owing to the multidimensional nature of aromaticity, these three indices agreed quite well. However, the HOMA index failed to give reliable information in this case.",
publisher = "Royal Soc Chemistry, Cambridge",
journal = "RSC Advances",
title = "Substituent effects on cyclic electron delocalization in symmetric B- and N- trisubstituted borazine derivatives",
volume = "3",
number = "46",
pages = "24108-24117",
doi = "10.1039/c3ra44189j"
}
Baranac-Stojanović, M.,& Stojanović, M.. (2013). Substituent effects on cyclic electron delocalization in symmetric B- and N- trisubstituted borazine derivatives. in RSC Advances
Royal Soc Chemistry, Cambridge., 3(46), 24108-24117.
https://doi.org/10.1039/c3ra44189j
Baranac-Stojanović M, Stojanović M. Substituent effects on cyclic electron delocalization in symmetric B- and N- trisubstituted borazine derivatives. in RSC Advances. 2013;3(46):24108-24117.
doi:10.1039/c3ra44189j .
Baranac-Stojanović, Marija, Stojanović, Milovan, "Substituent effects on cyclic electron delocalization in symmetric B- and N- trisubstituted borazine derivatives" in RSC Advances, 3, no. 46 (2013):24108-24117,
https://doi.org/10.1039/c3ra44189j . .

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