Du Li-ming, Zhou Jing, Yuan Jian-mei
Analytical and Testing Center, Shanxi Teacher's University, Linfen 041004, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2004 Dec;24(12):1623-5.
Charge-transfer complex was formed between LMX as the donor and Chloranilic Acid (CL) as the acceptor has been studied by fluorimetry. It was shown that the n-pi complex can be formed at ambient temperature, which can emit, which strong fluorescence. Different variables and parameters affecting the reactions were studied and optimized. Based on this, a simple and reliable fluorescence spectroscopy method for the determination of Lomefloxacin (LMX) has been developed. Interference from some co-formulated drugs was also studied. No interference was observed due to additives commonly present in the pharmaceutical preparations. The proposed methods could be applied successfully to the investigated pure compounds and pharmaceutical dosage forms with good accuracy and precision. The linear range is 0.04-0.8 mg x L(-1), the detection limit is 0.04 mg x L(-1), the recoveries of LMX are 97.4%-99.3%, and RSD is 1.3%-2.6%. Finally, the charge-transfer reaction mechanism was discussed. The composition of the change-transfer complex was found to be 1:1 by Bent-French and curved intersection methods. This ratio may be due to the presence of the fluorine atom acting as an electron drawing group in the molecule of lomefloxacin. The benzene ring has lower electron density, but nitrogen atom in 4' of piperazingl has higher electron density and is less sterically hindered. So n-pi charge transfer complexes were formed.
以洛美沙星(LMX)作为供体、氯冉酸(CL)作为受体形成的电荷转移络合物已通过荧光分析法进行了研究。结果表明,n-π络合物可在室温下形成,且能发出强烈荧光。研究并优化了影响该反应的不同变量和参数。基于此,开发了一种简单可靠的荧光光谱法用于测定洛美沙星(LMX)。还研究了一些复方制剂中药物的干扰情况。未观察到药物制剂中常见添加剂产生的干扰。所提出的方法能够成功应用于所研究的纯化合物和药物剂型,具有良好的准确度和精密度。线性范围为0.04 - 0.8 mg·L⁻¹,检测限为0.04 mg·L⁻¹,洛美沙星的回收率为97.4% - 99.3%,相对标准偏差为1.3% - 2.6%。最后,讨论了电荷转移反应机理。通过本特 - 弗伦奇法和曲线交叉法发现电荷转移络合物的组成比例为1:1。该比例可能是由于洛美沙星分子中存在作为吸电子基团的氟原子。苯环电子密度较低,但哌嗪环4'位的氮原子电子密度较高且空间位阻较小。因此形成了n-π电荷转移络合物。