铈(IV)硝酸铵(CAN)作为环保催化剂催化新型重氮水杨醛希夫碱的设计、表征、理论研究及染色性能

Ali A. Ali, H. Abd El-Wahab, Moustafa S. Abusaif, A. Ragab, Omar A. Abdel-Jaid, E. Eldeeb, Y. Ammar
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引用次数: 1

摘要

目的以偶氮水杨醛衍生物为基础制备新型分散染料TF-A[2-羟基-5-((3-(三氟甲基)苯基)重氮基)苯甲醛],并对其作为分散染料TF-ASC[双2-羟基-5-((3-(三氟甲基)苯基)重氮基)苯甲醛席夫碱- 4,4′-亚甲苯胺]在不同条件下对涤纶织物的染色效果进行了全面评价。设计/方法/途径以硝酸铈铵为催化剂,以10摩尔%的硝酸铈铵为催化剂,在室温下通过希夫碱缩合反应合成了分散染料。通过元素分析、傅里叶变换红外光谱、1H- nmr和13c - nmr等分析工具对所制备染料的化学结构进行了表征。研究了分散染料TF-ASC在不同条件下对涤纶的染色效果。通过对染色涤纶织物的色度、光度、洗涤度、牢度和色强等指标进行了测定。对离散傅里叶变换(DFT)的理论研究,包括EHOMO、ELUMO和优化几何结构进行了假设和详细讨论。结果表明,合成的有机染料TF-ASC具有较强的功能,适合于这种染色方法。由分散染料TF-ASC制备的染色织物具有较高的色强和较好的综合牢度性能。这些染料对涤纶织物有很高的亲和力,即使在碱性环境下,当pH值改变时,染料的亲和力也只有很小的变化。染色均匀度和色度深浅效果较好,有浅棕黄到深棕黄的多种色调。通过对EHOMO、ELUMO、优化结构、偶极子矩µ和亲电性指数等DFT计算研究得出,制备的有机染料TF-ASC更适合作为分散染料。独创性/价值本研究具有重要意义,因为它为具有优异亮度和均匀度的聚对苯二甲酸乙二醇酯纤维的染色提供了一种新的染料;该制备方法被认为是一种绿色化学方法,是一种有用的途径。
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Design, characterization, theoretical studies, and dyeing properties of new novel diazo salicylaldehyde Schiff base catalyzed with ceric (IV) ammonium nitrate (CAN) as an eco-friendly catalyst
Purpose The paper aims to the preparation of novel disperse dye based on azo salicylaldehyde derivatives TF-A [2-hydroxy-5-((3-(trifluoromethyl)phenyl)diazenyl)benzaldehyde] and full evaluation of their use as disperse dye TF-ASC [bis 2-hydroxy-5-((3-(trifluoromethyl)phenyl)diazenyl)benzaldehyde Schiff base with 4,4'-methylenedianiline] for dyeing polyester fabric at various conditions. Design/methodology/approach The dispersed dye was synthesized via Schiff base condensation in the presence of ceric ammonium nitrate cerium ammonium nitrate 10 mmole% as an eco-friendly catalyst at room temperature. The chemical structure of the prepared dye was characterized via elemental analysis, Fourier-transform infrared spectroscopy, 1H- and 13 C-NMR spectroscopic analysis tools. This study thoroughly examined the dyeing of disperse dye TF-ASC on polyester at various conditions. The characteristics of dyed polyester fabric were measured by colour measurements, as well as light, washing, crock fastness and finally, colour strength. The discrete fourier transform (DFT) theoretical studies, including EHOMO, ELUMO and optimized geometrical structure, were assumed and discussed in detail. Findings The results showed that the synthesized organic dye TF-ASC was highly functional and appropriate for this kind of dyeing method. The dyeing fabrics obtained from disperse dye TF-ASC, properties possess high colour strength as well as good overall fastness properties. These dyes had a high affinity for polyester fabric, with just a tiny change in dye affinity when the pH was changed, even under alkaline circumstances. The dye levelness and shade depth of the colour results were good, and there were a variety of hues from light brownish yellow to deep brownish yellow. The results obtained from DFT computational studies such as EHOMO, ELUMO, optimized structure, diploe moment µ and electrophilicity index deduced that prepared organic dye TF-ASC is more applicable as a dispersed dye. Originality/value This research is significant because it provides a new dye for dyeing polyethylene terephthalate fibres with exceptional brightness and levelness; the method of preparation is a useful pathway due to its being known as a green chemistry method.
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