Solvatochromism and azo-hydrazo tautomerism of novel arylazo pyridone dyes: Experimental and quantum chemical study
Nema prikaza
Autori
Ajaj, Ismail
Assaleh, Fathi H.

Markovski, Jasmina
Rančić, Milica

Brković, Danijela
Milcić, Miloš

Marinković, Aleksandar D.

Članak u časopisu (Objavljena verzija)
BY, CC BY-NC-ND
Metapodaci
Prikaz svih podataka o dokumentuApstrakt
The state of the tautomeric equilibria of eleven arylazo pyridone dyes was evaluated from UV-Vis absorption spectra with the aid of the quantum mechanical modeling. NMR analysis and theoretical calculations, by using PCM/omega B97X-D/6-311G(d,p) method, confirmed that prepared compounds exist mainly in Hydrazo form. Internal hydrogen bonding in Hydrazo tautomer, analyzed by AIM topological analysis and total electron density at the bond critical point (BCP), confirmed a presence of strong hydrogen bond which contributes to higher stability of Hydrazo form. Linear solvation energy relationships (LSERs) rationalized solvent influence on solvatochromism of all compounds in Hydrazo form and K-T by using Kamlet-Taft model. Linear free energy relationships (LFERs) were applied to the substituent-inducedNMR chemical shifts (SCS) using SSP (single substituent parameter) and DSP (dual substituent parameter) model. Density plots over the highest occupied (HOMO) and lowest unoccupied molecular or...bitals (LUMO) energy surface provide information on the charge transfer during excitation. The molecular electrostatic potential (MEP) surface map was plotted over the optimized geometry of the molecules in order to visualize electron density distribution and explain origin of solvent/solute interactions.
Ključne reči:
UV-Vis spectra / Solvatochromism / Azo-Hydrazo tautomerism / Arylazo pyridone dyeIzvor:
Arabian Journal of Chemistry, 2019, 12, 8, 3463-3478Izdavač:
- Elsevier
Finansiranje / projekti:
- Proučavanje sinteze, strukture i aktivnosti organskih jedinjenja prirodnog i sintetskog porekla (RS-MESTD-Basic Research (BR or ON)-172013)
Institucija/grupa
Šumarski fakultetTY - JOUR AU - Ajaj, Ismail AU - Assaleh, Fathi H. AU - Markovski, Jasmina AU - Rančić, Milica AU - Brković, Danijela AU - Milcić, Miloš AU - Marinković, Aleksandar D. PY - 2019 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1020 AB - The state of the tautomeric equilibria of eleven arylazo pyridone dyes was evaluated from UV-Vis absorption spectra with the aid of the quantum mechanical modeling. NMR analysis and theoretical calculations, by using PCM/omega B97X-D/6-311G(d,p) method, confirmed that prepared compounds exist mainly in Hydrazo form. Internal hydrogen bonding in Hydrazo tautomer, analyzed by AIM topological analysis and total electron density at the bond critical point (BCP), confirmed a presence of strong hydrogen bond which contributes to higher stability of Hydrazo form. Linear solvation energy relationships (LSERs) rationalized solvent influence on solvatochromism of all compounds in Hydrazo form and K-T by using Kamlet-Taft model. Linear free energy relationships (LFERs) were applied to the substituent-inducedNMR chemical shifts (SCS) using SSP (single substituent parameter) and DSP (dual substituent parameter) model. Density plots over the highest occupied (HOMO) and lowest unoccupied molecular orbitals (LUMO) energy surface provide information on the charge transfer during excitation. The molecular electrostatic potential (MEP) surface map was plotted over the optimized geometry of the molecules in order to visualize electron density distribution and explain origin of solvent/solute interactions. PB - Elsevier T2 - Arabian Journal of Chemistry T1 - Solvatochromism and azo-hydrazo tautomerism of novel arylazo pyridone dyes: Experimental and quantum chemical study EP - 3478 IS - 8 SP - 3463 VL - 12 UR - conv_2390 ER -
@article{ author = "Ajaj, Ismail and Assaleh, Fathi H. and Markovski, Jasmina and Rančić, Milica and Brković, Danijela and Milcić, Miloš and Marinković, Aleksandar D.", year = "2019", abstract = "The state of the tautomeric equilibria of eleven arylazo pyridone dyes was evaluated from UV-Vis absorption spectra with the aid of the quantum mechanical modeling. NMR analysis and theoretical calculations, by using PCM/omega B97X-D/6-311G(d,p) method, confirmed that prepared compounds exist mainly in Hydrazo form. Internal hydrogen bonding in Hydrazo tautomer, analyzed by AIM topological analysis and total electron density at the bond critical point (BCP), confirmed a presence of strong hydrogen bond which contributes to higher stability of Hydrazo form. Linear solvation energy relationships (LSERs) rationalized solvent influence on solvatochromism of all compounds in Hydrazo form and K-T by using Kamlet-Taft model. Linear free energy relationships (LFERs) were applied to the substituent-inducedNMR chemical shifts (SCS) using SSP (single substituent parameter) and DSP (dual substituent parameter) model. Density plots over the highest occupied (HOMO) and lowest unoccupied molecular orbitals (LUMO) energy surface provide information on the charge transfer during excitation. The molecular electrostatic potential (MEP) surface map was plotted over the optimized geometry of the molecules in order to visualize electron density distribution and explain origin of solvent/solute interactions.", publisher = "Elsevier", journal = "Arabian Journal of Chemistry", title = "Solvatochromism and azo-hydrazo tautomerism of novel arylazo pyridone dyes: Experimental and quantum chemical study", pages = "3478-3463", number = "8", volume = "12", url = "conv_2390" }
Ajaj, I., Assaleh, F. H., Markovski, J., Rančić, M., Brković, D., Milcić, M.,& Marinković, A. D.. (2019). Solvatochromism and azo-hydrazo tautomerism of novel arylazo pyridone dyes: Experimental and quantum chemical study. in Arabian Journal of Chemistry Elsevier., 12(8), 3463-3478. conv_2390
Ajaj I, Assaleh FH, Markovski J, Rančić M, Brković D, Milcić M, Marinković AD. Solvatochromism and azo-hydrazo tautomerism of novel arylazo pyridone dyes: Experimental and quantum chemical study. in Arabian Journal of Chemistry. 2019;12(8):3463-3478. conv_2390 .
Ajaj, Ismail, Assaleh, Fathi H., Markovski, Jasmina, Rančić, Milica, Brković, Danijela, Milcić, Miloš, Marinković, Aleksandar D., "Solvatochromism and azo-hydrazo tautomerism of novel arylazo pyridone dyes: Experimental and quantum chemical study" in Arabian Journal of Chemistry, 12, no. 8 (2019):3463-3478, conv_2390 .