微波辐射合成新的1-(2-氧代-2-(2-氧基-2H-铬烯-3-基)乙基)吡啶-1-溴化铵和1-甲基-3-(2-氧代-2-(2-羟基-2H-铬二烯-3-基)乙酯)-1H-咪唑-3-溴化铵的溶剂致变色、光物理和DFT研究。

P. Mahulikar, A. Patil, Raosaheb S. Patil, V. Patil
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引用次数: 0

摘要

设计和开发一种更环保、高效的新型吡啶鎓和咪唑鎓化合物方案,并研究其光学、溶剂化变色、热学和理论性质。吡啶鎓和咪唑鎓基化合物在改善光学和热行为方面显示出具有这些基本骨架设计的不同应用化合物。为了研究吡啶鎓和咪唑鎓化合物的光学性质,我们说明了溶剂极性对吸收和发射行为的影响,作为取向极化率和ET(30)溶剂参数的函数。通过DFT方法进行理论模拟,研究热稳定性并计算分子轨道取向和HOMO-LUMO能量。通过FT-IR、质谱、1H NMR和13C NMR对其结构进行了确证,并用紫外可见分光光度计和荧光计对其光学性质进行了研究。使用热重分析研究了热行为,并使用GAUSSIAN 16软件测定了分子轨道取向和能量。合成并表征了具有良好热稳定性和光学性能的新型化合物。该研究解释了分子之间的分子间电子转移以及溶剂对其激发和发射特性的影响。实验和理论研究说明了这两种化合物的光学、热学和电子性质。目前的工作描述了微波辅助合成溴化吡啶鎓和溴化咪唑鎓的溶剂化变色光学行为,这是一种有效的策略。溶剂化变色研究解释了存在的非特异性溶质-溶剂相互作用。光物理、热和DFT研究表明,吡啶鎓和咪唑鎓化合物都用于光电应用。此外,这项工作可能有助于研究人员开发用于光电子应用的新骨架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solvatochromic, Photophysical and DFT Studies of Newer 1-(2-oxo-2-(2-oxo-2H-chromen-3-yl)ethyl)pyridin-1-ium bromide and 1-methyl-3-(2-oxo-2-(2-oxo-2H-chromen-3-yl)ethyl)-1H-imidazol-3-ium bromide Synthesized Under Microwave Irradiation.
To design and develop a greener, efficient protocol towards newer pyridinium and imidazolium compounds and investigate optical, solvatochromic, thermal, and theoretical properties. Pyridinium and imidazolium based compounds show diverse application compounds with these basic skeleton designs in respect to get improved optical and thermal behavior. To study the optical properties of pyridinium and imidazolium compounds, we illustrate the solvent polarity effect on absorption and emission behavior as a function of orientation polarizability and ET(30) solvent parameters. To study thermal stability and compute the molecular orbital orientation and HOMO-LUMO energies using theoretical simulation by DFT approach. The structures were confirmed by FT-IR, Mass, 1H NMR and 13C NMR, optical properties investigated using UV-Visible spectrophotometer and fluorometer. The thermal behavior was investigated using thermal gravimetric analysis and molecular orbital orientation and energies were determined using GAUSSIAN 16 software. The newer compounds with good thermal stability and optical behavior have been synthesized and characterized. The study interprets the intermolecular electron transfer amongst the molecules and the effect of solvents on their excitation and emission properties. The experimental and theoretical study illustrates the optical, thermal, and electronic properties of both compounds. Present work describes the solvatochromic optical behavior of pyridinium bromide and imidazolium bromide synthesized by microwave-assisted greener an efficient strategy. The solvatochromic study interprets the presence nonspecific solute-solvent interactions, The photophysical, thermal, and DFT study revealed that both pyridinium and imidazolium compounds are used for optoelectronic applications. Moreover, the work could be helpful to researchers to develop a new skeletons for optoelectronic applications.
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