首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Synthesis, spectroscopic characterization and structural investigation of new charge-transfer complexes of piroxicam with 2,3-dichloro-5,6-dicyano-1,4-benzoqu none and chloranilic acid: Experimental and theoretical studies
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Synthesis, spectroscopic characterization and structural investigation of new charge-transfer complexes of piroxicam with 2,3-dichloro-5,6-dicyano-1,4-benzoqu none and chloranilic acid: Experimental and theoretical studies

机译:二氯氧乙烷新电荷转移络合物的合成,光谱表征及结构研究,具有2,3-二氯-5,6-二氰基1,4-苯并QU和氯酸:实验和理论研究

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摘要

Charge transfer (CT) complexes have great scientific importance because they include wide applications in different fields, one of the most essential of these applications is to determine the activity of pharmacological compounds. CT complexes between the donor piroxicam and 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) and chloranilic acid (ChA) as electron acceptors have been studied and characterized both experimentally and theoretically. Herewith we aimed to determine the stability of the expected structure of the formed piroxicam complexes for the first time. Several analytical tools (FTIR, NMR, mass spectrometry, UV-Visible spectroscopy and conductometric analysis) were applied to characterize these complexes. The stoichiometry of the examined complexes was assessed using Job's method and Benesi-Hildebrand equation, and a molar ratio of 1:1 between the donor and acceptors were resulted from these complexes. The physical parameters of the formed CT-complexes were determined by calculations of formation constant, molar absorptivity, oscillator strength, dipole moment, ionization potential, CT energy, resonance energy, dissociation energy, and standard free energy of complexation. In addition, the UV-Vis spectra and CT transition properties of these complexes were computationally determined with DFT and TD-DFT methods. The results confirmed that these complexes are CT complexes. The current study shows that the complexes formed are stable and can be used for the determination of piroxicam in pharmaceutical form.
机译:电荷转移(CT)复合物具有很大的科学重要性,因为它们包括不同领域的广泛应用,这些应用中最为必要的是确定药物化合物的活性。在实验和理论上已经研究了供体吡吡喃胺和2,3-二氯-5,6-二氰基-1,4-苯醌(DDQ)和氯酸(CHA)之间的CT络合物。在这里,我们旨在首次确定形成的奇异弹素复合物的预期结构的稳定性。应用了几种分析工具(FTIR,NMR,质谱,UV可见光谱和电导测定分析)以表征这些配合物。使用作业的方法和Benesi-Hildebrand方程评估所检查的配合物的化学计量,并由这些配合物之间的摩尔比为1:1。通过计算形成恒定,摩尔吸收率,振荡器强度,偶极矩,电离电位,CT能量,共振能,解离能和标准自由能量来确定所形成的CT络合物的物理参数。另外,使用DFT和TD-DFT方法计算这些配合物的UV-VIS光谱和CT转变性质。结果证实,这些配合物是CT复合物。目前的研究表明,形成的复合物是稳定的并且可用于在药物形式中测定吡脲。

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