Abstract
AbstractIn this study, (E)-5-((4,6-dichloro-1,3,5-triazin-2-yl)amino)-4-hydroxy-3-(phenyldiazenyl)naphthalene-2,7-diylbis(hydrogen sulfite), a cyanurated H-acid (CHA) azo dye, was synthesized and characterized using FT-IR spectrophotometer and GC-MS spectroscopy. A density functional theory (DFT) based B3LYP and CAM-B3LYP method with 6–311 + G (d,p) basis set analysis was computed for HOMO-LUMO, natural bonding orbitals (NBO), UV-Vis absorptions and excitation interactions, in order to understand its molecular orbital excitation properties. A low Energy gap (Eg) of 2.947 eV was obtained from the molecular orbital analysis, which showed that HOMO to LUMO transition is highly feasible; hence CHA is adequate for diverse electronic and optic applications. Studies of the first five excitations (S0 → S1/S2/S3/S4/S5) of CHA revealed that S0 → S1 and S0 → S3 are π → π* type local excitations distributed around the –N=N– group; S0 → S2, a Rydberg type local excitation; S0 → S4, a highly localized π → π* excitation; while S0 → S5 is an n → π* charge transfer from a benzene ring to –N=N– group. From NBO analysis, we obtained the various donor–acceptor orbital interactions contributing to the stabilization of the studied compound. Most significantly, some strong hyper-conjugations (n → n*) within fragments, and non-bondingand anti-bonding intermolecular (n → n*/π* and π → n*/π*) interactions were observed to contribute appreciable energies. This study is valuable for understanding the molecular properties of the azo dyes compounds and for synthesizing new ones in the future.
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences,General Physics and Astronomy,General Engineering,General Environmental Science,General Materials Science,General Chemical Engineering
Reference41 articles.
1. Shankarling GS, Deshmukh PP, Joglekar AR (2017) Process intensification in azo dyes. J Environ Chem Eng 5:3302–3308
2. Berradi M, Hsissou R, Khudhair M, Assouag M, Cherkaoui O, El Bachiri A, El Harfi A (2019) Textile finishing dyes and their impact on aquatic environs. Heliyon 5:e02711
3. McLaren K (1983) The colour science of dyes and pigments, Adam Hilger Ltd.
4. Gürses A, Açıkyıldız M, Günes K, Gürses MS (2016) Classification of dye and pigments. Dyes and Pigments. Springer, pp 31–45
5. Benkhaya S, El Harfi A (2017) Classifications, properties and applications of textile dyes: a review. Appl J Environ Eng Sci 3:00000–00003
Cited by
38 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Identification of new inhibitors for the avian H1N1 virus through molecular docking and dynamic simulation approaches;Journal of the Indian Chemical Society;2024-10
2. Structural reactions, green chemistry solvents, topology surface, electronic and biological studies of 4-(dihydroxymethyl) pyridine-2-carbonitrile – Anti-tuberculosis activity;Journal of the Indian Chemical Society;2024-10
3. The influence of catalyst structure on acidic strength of –SO3H groups for alkyl levulinate synthesis from biomass–derived feedstocks using sulfonic acid functionalized flexible MOF catalyst;Chemical Engineering Journal;2024-07
4. Synthesis, spectral, and NLO studies of indol derivative bearing 1, 2, 4-triazole-3-thiol group;Optical Materials;2024-07
5. Quantum chemical computational analysis, electronic transitions, interaction mechanisms analysis by spectroscopic, molecular docking, and molecular dynamic simulation of retinol;Spectroscopy Letters;2024-05-30