首页> 外文期刊>Journal of Molecular Structure >Molecular properties of 5-(1H-Benzo[D]Oxa, thia, imid azole-2-Yl)-2-methyl quinazolin-4-ol fluorescent brighteners: Theoretical and experimental approach
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Molecular properties of 5-(1H-Benzo[D]Oxa, thia, imid azole-2-Yl)-2-methyl quinazolin-4-ol fluorescent brighteners: Theoretical and experimental approach

机译:分子特性为5-(1H-苯并[D] Oxa,THIA,IMID ZOLE-2-YL)-2-甲基喹唑啉-4- ol荧光增白剂:理论和实验方法

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摘要

A series of seven new fluorescent brighteners 5-(1H-benzo[d]oxazole, thiazole, imidazole-2-yl)-2-methyl quinazolin-4-ol were synthesized by chemical reaction of 2-Methyl-4-oxo-3,4-dihydroquinazoline-5-carboxylic acid and derivatives of 2-aminophenol/2-aminothiophenol/1,2-phenylenediamine attributes to its computational and experimental comparison. Density Functional Theory (DFT) and Time-Dependent Density Functional Theory (TD-DFT) calculations was performed by PCM model maintaining C-1 symmetry in ground state both in gas and DMF solvent. The electronic distribution over the molecules has built up strong relationship with its fluorescence quantum efficiency. HOMO and LUMO energies defined electron donor acceptor relationship and shows two distinct plane which are less responsive towards the 17-17 electronic transition and has inductive electronic effect control their fluorescence properties. The fluorescent brighteners 6a-6g exhibits 0.6-22% and 0.6-7.4% deviation for UV-absorption and fluorescence emission respectively. The theoretical and experimental results for absorption and emission are in well agreement that certainly believe to perform theoretical calculations before experimental setup. The thermally stable fluorescent brightening agents have been systematically investigated. The color space method was used to evaluate the brightening values on polyester fabrics in terms of L*, a* and b*. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过2-甲基-4-氧代-3的化学反应合成了一系列七种新的荧光增白剂5-(1H-苯并[D]氧唑,噻唑,噻唑,咪唑-2-基)-2-甲基喹唑啉-4-醇,4-二羟基喹唑啉-5-羧酸和2-氨基苯酚/ 2-氨基酚/ 1,2-苯二胺属性的衍生物,其计算和实验比较。密度泛函理论(DFT)和时间依赖性密度泛函理论(TD-DFT)计算通过PCM模型在气体和DMF溶剂中维持地面状态的C-1对称性。分子上的电子分布与其荧光量子效率建立了强烈的关系。 HOMO和LUMO Energies定义了电子给体受体关系,并显示了两个不同的平面,响应于17-17电子转换,并且具有诱导电子效应控制其荧光性能。荧光增白剂6a-6g分别显示出紫外吸收和荧光发射的0.6-22%和0.6-7.4%。吸收和排放的理论和实验结果是一致认为在实验设置之前肯定会遵循理论计算。已经系统地研究了热稳定的荧光亮化剂。颜色空间方法用于评估L *,A *和B *的聚酯织物上的亮度值。 (c)2019 Elsevier B.v.保留所有权利。

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