Li Aiyun, Song Zhiqiang
Experimental Center of Fundamental Theories, Shandong Sport University, Jinan 250102, China.
Department of Physical Education, Shandong Sport University, Jinan 250102, China.
ScientificWorldJournal. 2014;2014:742935. doi: 10.1155/2014/742935. Epub 2014 May 6.
α-Keto acid of pefloxacin mesylate (PFLX) can form the complex with Terbium(III). The intramolecular energy from PFLX to Terbium(III) ion takes place when excited, and thus Terbium(III) excited state is formed and then emits the characteristic fluorescence of Terbium(III), locating at 490, 545, 580, and 620 nm. The second-order scattering (SOS) peak at 545 nm also appears for the complex with the exciting wavelength of 273 nm. When the silver nanoparticles are added to the system, the luminescence intensity at 545 nm greatly increased. So, with the adding of nanoparticles to the Terbium(III)-PFLX complex, not only is the intramolecular energy promoted but also the SOS intensity is enhanced. The experimental results show that it is the silver nanoparticles with certain size and certain concentration which can greatly enhance the fluorescence-SOS intensity, and the relative intensity at 545 nm is proportional to the amount of PFLX. Based on this phenomenon, a novel method for the determination of PFLX has been developed and applied to the determination of PFLX in capsule and serum samples.
甲磺酸培氟沙星(PFLX)的α-酮酸可与铽(III)形成配合物。当被激发时,PFLX向铽(III)离子发生分子内能量转移,从而形成铽(III)激发态,进而发出铽(III)的特征荧光,位于490、545、580和620nm处。对于激发波长为273nm的该配合物,在545nm处也出现二级散射(SOS)峰。当向体系中加入银纳米颗粒时,545nm处的发光强度大大增加。所以,向铽(III)-PFLX配合物中加入纳米颗粒,不仅促进了分子内能量转移,而且增强了SOS强度。实验结果表明,具有一定尺寸和一定浓度的银纳米颗粒能大大增强荧光-SOS强度,且545nm处的相对强度与PFLX的量成正比。基于此现象,建立了一种测定PFLX的新方法,并将其应用于胶囊和血清样品中PFLX的测定。