化学合成新型有机材料3-((2,5二氟苯基)二氮基)-6-乙基-4-羟基- 2h -吡喃[3,2-c]喹啉-2,5(6H)-二酮的结构、性质和热行为:抗菌活性

H. Soliman, I. Yahia
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引用次数: 0

摘要

对合成的3-((2,5-二氟苯基)二氮基)-6-乙基-4-羟基-2 H -吡喃[3,2-c]喹啉-2,5(6 H)-二酮(DFPDAEHPQD)进行了化学、晶体结构、性质、热行为、动力学参数和抗肿瘤活性的研究。采用不同的技术鉴定DFPDAEHPQD的结构,如1h核磁共振(NMR)、13c核磁共振(NMR)、x射线衍射(XRD)分析、扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和热重分析(TGA)测量。XRD分析表明DFPDAEHPQD具有多晶性质,TGA结果表明DFPDAEHPQD在300℃左右的温度下具有热稳定性,利用200 ~ 1600 nm范围内的扩散反射率(DR)测量计算了DFPDAEHPQD的光学参数和吸收系数。利用Kubelka-Munk理论(KMT)在光子能量的应用范围内得到了两个光学带隙值(2.35和2.25 eV)。第一个值(2.35 eV)负责直接转变,而另一个值(2.25 eV)负责间接转变。交流电导率符合通用幂律σ AC (ω) = Aω s。此外,DFPDAEHPQD对HepG-2和HCT-116两种人类癌细胞均表现出极显著的抗肿瘤活性和细胞毒性,其IC 50值分别为3.07和7.15 μg/ml。最后,我们希望DFPDAEHPQD成为一种环保和更节能的新型半导体,可安全用于各种电子和生物医学应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure, properties, and thermal behavior of chemically synthesized 3-((2,5 Difluorophenyl)diazenyl)-6-ethyl-4-hydrox-2H-pyrano[3,2-c]quinoline-2,5(6H)-dione as new brand organic materials: Antimicrobial activity
Chemical, crystal structures, properties, thermal behaviour, kinetic parameters, and antitumor activity of synthesized 3-((2,5-Difluorophenyl)diazenyl)-6-ethyl-4-hydrox-2 H - pyrano[3,2-c ]quinoline-2,5(6 H )-dione (DFPDAEHPQD) were investigated and characterized. Different techniques are used to identify the structure of DFPDAEHPQD, such as 1 H nuclear magnetic resonance (NMR) 13 C NMR, X-ray diffraction (XRD) analysis, scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), and thermogravimetric analysis (TGA) measurements. XRD analysis showed that DFPDAEHPQD had a polycrystalline nature, and TGA results illustrated that the DFPDAEHPQD was thermally stable up to about 300 o C. Optical parameters and absorption coefficient of DFPDAEHPQD were calculated using diffused reflectance (DR) measurements in a wide range of wavelengths (200 to 1600 nm). Two optical bandgap values (2.35 and 2.25 eV) were obtained in the applied range of photon energy using Kubelka–Munk theory (KMT). The first value (2.35 eV) is responsible for the direct transition, while the other value (2.25 eV) is responsible for the indirect transition. The AC conductivity obeyed the universal power-law σ AC (ω) = Aω s . Moreover, DFPDAEHPQD showed highly significant antitumor activity and cytotoxicity against two human cancer cell lines: HepG-2 and HCT-116, with the corresponding IC 50 values of 3.07 and 7.15 μg/ml, respectively. Finally, we hope that DFPDAEHPQD turns out to be environmentally friendly and more energy efficient a novel semiconductor for safe use in various electronic and biomedical applications.
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