首页> 外文期刊>Journal of Fluorescence >Red Emitting Monoazo Disperse Dyes with Phenyl(1H-benzoimidazol-5-yl) Methanone as Inbuilt Photostabilizing Unit: Synthesis, Spectroscopic, Dyeing and DFT Studies
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Red Emitting Monoazo Disperse Dyes with Phenyl(1H-benzoimidazol-5-yl) Methanone as Inbuilt Photostabilizing Unit: Synthesis, Spectroscopic, Dyeing and DFT Studies

机译:用苯基(1H-苯并咪唑-5-基)甲烷酮作为内置光稳定单位的红色发光单氮杂分散染料:合成,光谱,染色和DFT研究

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摘要

Synthesis of three novel phenyl(1H-benzoimidazol-5-yl)methanone based fluorescent monoazo disperse dyes and their characterization by spectroscopic methods (H-1 NMR, C-13 NMR, IR and MS) are presented. Insertion of phenyl(1H-benzoimidazol-5-yl)methanone moiety bring about induced fluorescence properties and enhanced photostability as compared to the previously reported analogues (CI Solvent Yellow 14, 4-diethylamino-2-hydroxy-1-diazobenzene and 7-(diethylamino)-4-hydroxy-3-(phenyldiazenyl)-2H-chromen-2-one). Synthesized phenyl(1H-benzoimidazol-5-yl)methanone based dyes exhibited red-shifted absorption maxima (497-516 nm), high molar extinction coefficients and are emitting in the far-red region (565-627 nm). Moreover, naphthalene-comprising dyes showed negative solvatochromism while N,N-diethylamine comprising dyes showed positive solvatochromism and are in good agreement with solvent polarity graphs and the computed energy levels of highest occupied and lowest unoccupied molecular orbitals. Synthesised dyes have better photostability (light fastness) and sublimation fastness on dyed polyester and nylon compared to reported analogues. DFT calculated energies, electrophilicity index and Frontier Molecular Orbitals (FMO's) enabled to evaluate the stabilities of azo and hydrazone forms of the dyes.
机译:提出了三种新型苯基(1H-苯并咪唑-5-基)甲基酮的荧光单氮杂氮杂染料及其表征的三种新型苯基(H-1 NMR,C-13 NMR,IR和MS)的表征。与先前报道的类似物相比(C 1溶剂黄14,4-二乙基氨基-2-羟基-1-二苄苯和7-(二乙基氨基)-4-羟基-3-(苯基二亚苯基)-2H-铬-2-一)。合成的苯基(1H-苯并咪唑-5-基)甲基酮的染料显示出红移吸收最大值(497-516nm),高摩尔消光系数,在远红地区(565-627nm)发出。此外,含萘染料的染料显示阴性溶性溶解度,而N-二乙胺包含染料的N-二乙胺显示出阳性溶剂溶剂,并且与溶剂极性图表吻合良好,并且计算的能量水平最高占用和最低的未占用分子轨道。与报道的类似物相比,合成染料在染色的聚酯和尼龙上具有更好的光稳定性(耐光)和升华牢度。 DFT计算的能量,亲电子性指数和前沿分子轨道(FMO)能够评估亚氮和腙形式的染料的稳定性。

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