Department of Chemistry, Faculty of Science, Damanhur University, Damanhur, Egypt.
Curr Org Synth. 2021;18(5):506-516. doi: 10.2174/1570179417666201218164519.
In continuation of our interest in 2-amino-3-cyano-4.6-diarylpyridines reactions in various fields of organic chemistry which were previously used for the synthesis of many heterocyclic compounds and where dyes generally have many applications especially when benzene or anthraquinone azo dyes are replaced with heterocyclic azo dyes so new derivatives of heterocyclic azo dyes derived from 2-amino-3-cyano- 4.6-diarylpyridines were prepared.
The IR spectra (KBr), NMR, elemental microanalyses and mass spectra, were performed at different faculties of science in Egypt. Absorption spectra were recorded on Unicam SP 750 in DMF and acetone using 1x 10 mol l of dye concentration. Optimization was performed using density functional theory (DFT) and time dependent-DFT by applying Becke's three-parameter hybrid exchange functional with Lee- Yang-Parr gradient-corrected correlation (B3LYP functional). The chemical reagents used in the synthesis were purchased from Fluka, Sigma and Aldrich.
The structure of the preparing Heterocyclic azo dyes is proven using spectroscopic tools and elemental analysis, and investigation of its absorption spectra indicate the effect of both solvent and substituent on absorption maximum. DFT calculations were performed on some of the selected dyes.
Structures of newly synthesized heterocyclic azo dyes were confirmed using elemental analysis, IR, H-NMR, C-NMR and mass spectral data. DFT theory was used in explaining the electronic properties of some selected dyes, where the energy gap can help in understanding the reactivity behaviour and stability of these compounds. Absorption spectra indicate the effect of both solvent and substituent on absorption maximum.
在我们对 2-氨基-3-氰基-4.6-二芳基吡啶在有机化学各个领域的反应的兴趣的延续中,我们之前曾将其用于许多杂环化合物的合成,其中染料通常具有许多应用,特别是当苯或蒽醌偶氮染料被杂环偶氮染料取代时,因此,我们制备了新的杂环偶氮染料衍生物。
IR 光谱(KBr)、NMR、元素微量分析和质谱在埃及不同科学学院进行。在 DMF 和丙酮中使用 1x10 mol l 的染料浓度在 Unicam SP 750 上记录吸收光谱。通过应用 Becke 的三参数混合交换函数与 Lee-Yang-Parr 梯度校正相关(B3LYP 函数)进行密度泛函理论(DFT)和时间相关-DFT 优化。合成中使用的化学试剂均购自 Fluka、Sigma 和 Aldrich。
通过光谱工具和元素分析证明了制备杂环偶氮染料的结构,并研究了其吸收光谱,表明溶剂和取代基对吸收最大值的影响。对一些选定的染料进行了 DFT 计算。
使用元素分析、IR、H-NMR、C-NMR 和质谱数据证实了新合成的杂环偶氮染料的结构。DFT 理论用于解释一些选定染料的电子性质,其中能隙有助于理解这些化合物的反应性行为和稳定性。吸收光谱表明溶剂和取代基对吸收最大值的影响。