DFT Study of the Six-Membered Heterocyclic SinN6-nHn (n = 0-6): Stability and Aromaticity
Publish place: Organic Chemistry Research، Vol: 2، Issue: 1
Publish Year: 1395
Type: Journal paper
Language: English
View: 128
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Document National Code:
JR_ORGC-2-1_009
Index date: 25 September 2023
DFT Study of the Six-Membered Heterocyclic SinN6-nHn (n = 0-6): Stability and Aromaticity abstract
One main group of organic chemistry is related to the aromatic compounds. In the present work, we replaced the CH group of benzene by silicon and nitrogen analogues. Then, Density functional theory (DFT) calculations were carried out for six-membered heterocyclic Si-N aromatic rings. Full geometry optimizations were performed in gas-phase, and at B3LYP level using 6-311++G(d,p) and CBSB7 basis sets. Here, the stability and aromatic properties of the molecules were investigated. It was observed that the molecule 1,3,5-triaza-2,4,6-trisiline shows high kinetic stability and low chemical reactivity. Total energies, nucleus-independent chemical shift (NICS) and HOMO-LUMO gap values were calculated to determine the stability, aromaticity and reactivity of azasilines. NICS calculations denoted high aromatic property for hexasiline and hexazine. We also considered seven different isodesmic reactions for stabilization energy (SE) calculations of molecules. The molecule 1,4,5,6-tetraaza-2,3-disiline showed the greatest aromatic stabilization among all molecules.
DFT Study of the Six-Membered Heterocyclic SinN6-nHn (n = 0-6): Stability and Aromaticity Keywords:
DFT Study of the Six-Membered Heterocyclic SinN6-nHn (n = 0-6): Stability and Aromaticity authors
Mehdi Nabati
Azarbaijan Shahid Madani University
Mehrdad Mahkam
Azarbaijan Shahid Madani University