Gülle Sibel, Çelik Erbaş Seçil, Polatoğlu İlker
Faculty of Engineering and Natural Sciences, Department of Chemistry, Manisa Celal Bayar University, Muradiye, Manisa, 45040, Turkey.
Faculty of Engineering and Natural Sciences, Department of Metallurgical and Materials Engineering, Manisa Celal Bayar University, Muradiye, Manisa, 45040, Turkey.
J Fluoresc. 2025 Mar 5. doi: 10.1007/s10895-025-04191-4.
In this study, three new phenanthroimidazole based beta-biketone compounds containing different donor (methoxy and dodecyloxy) and acceptor (cyano) groups were synthesized. Spectroscopic and electrochemical properties of the synthesized compounds were studied. FTIR, H-NMR, C-NMR, and LC-MS/MS were carried out for the structural analyses of the phenanthroimidazole derivatives. UV-vis absorption and emission studies were also carried out in the solvents with different polarities. High molar absorption coefficients and high Stokes' shift values were observed. The photostability of these derivatives was measured in all the solvents used. These values suggest that the derivatives could be used in fluorescence imaging applications for various biological and analytical purposes. Furthermore, the potential use of these molecules as electron transfer mediators for the electrochemical behavior of biological material was investigated. All the curves were also simulated using the most suitable equivalent Randles circuit. The charge-transfer resistance values varied depending on the donor and acceptor groups in the synthesized molecules. The Nyquist plots were evaluated, and it was observed that these molecules exhibit different resistance to electron transfer. These synthesized molecules can potentially be used as electron transfer mediators in the electrochemical detection of biological analytes.
在本研究中,合成了三种基于菲并咪唑的新型β-二酮化合物,它们含有不同的供体(甲氧基和十二烷氧基)和受体(氰基)基团。研究了合成化合物的光谱和电化学性质。对菲并咪唑衍生物进行了傅里叶变换红外光谱(FTIR)、氢核磁共振(H-NMR)、碳核磁共振(C-NMR)和液相色谱-串联质谱(LC-MS/MS)分析以确定其结构。还在不同极性的溶剂中进行了紫外-可见吸收和发射研究。观察到高摩尔吸收系数和高斯托克斯位移值。在所有使用的溶剂中测量了这些衍生物的光稳定性。这些值表明这些衍生物可用于各种生物和分析目的的荧光成像应用。此外,研究了这些分子作为生物材料电化学行为的电子转移介质的潜在用途。所有曲线也使用最合适的等效兰德尔斯电路进行了模拟。电荷转移电阻值根据合成分子中的供体和受体基团而变化。对奈奎斯特图进行了评估,观察到这些分子对电子转移表现出不同的抗性。这些合成分子有可能用作生物分析物电化学检测中的电子转移介质。