...
首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Chelation enhanced fluorescence of rhodamine based novel organic nanoparticles for selective detection of mercury ions in aqueous medium and intracellular cell imaging
【24h】

Chelation enhanced fluorescence of rhodamine based novel organic nanoparticles for selective detection of mercury ions in aqueous medium and intracellular cell imaging

机译:螯合性增强罗丹明新型有机纳米粒子的荧光选择性检测水介质和细胞内细胞成像中的汞离子

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A simple, quick and useful reprecipitation method was used to prepare rhodamine based fluorescent nanoparticles. The characterization techniques such as zeta-particle sizer and scanning electron microscopy were studied to investigate the formation of desired nanoparticles FONs-RSB along with its aqueous stability, surface charge, particle size, and morphological features. The comparative optical properties between parent molecule RSB and FONs-RSB were examined using absorption and fluorescence studies. The sphere morphology of FONs-RSB having 82 nm particle size and negative zeta potential (-33.5 mV) showed selective and sensitive interaction with only Hg2+ amongst the series of metal ion studied which was revealed by florescence titration results. The interaction between FONs-RSB and Hg2+ leads to enhance the fluorescence of FONs-RSB is because of chelation enhanced fluorescence (CHEF) phenomenon. The interference of foreign metal ions was found to be unaffected to the fluorescence enhancement induced by Hg2+. The binding stoichiometry and binding constant were evaluated using Job's and modified Benesi-Hildebrand plot. The mechanism of binding interaction and nature of complexation were analyzed using Infrared (IR), Nuclear Magnetic Resonance (NMR), absorption and fluorescence lifetime titration in the absence and presence of a variable amount of Hg2+ to FONs-RSB. Further, the reaction product of the sensing process in the present investigation was examined using mass analysis. The detection limits calculated using the present method were found to be 1.729 ng/mL (8.619 nM) and 1.68 ng/mL when linear concentration of Hg2+ additions were 0 - 2 mu g/mL and 0 -100 ng/mL, respectively. The practical application of the present method involves the quantitative determination of Hg2+ in environmental samples collected from the local campus and intracellular cell imaging of Hg2+ using A375 living cells with non-toxic behavior.
机译:使用简单,快速而有用的再沉淀方法制备罗丹明基荧光纳米粒子。研究了Zeta粒子Sizer和扫描电子显微镜的表征技术,以研究所需的纳米颗粒FONS-RSB的形成以及其水性稳定性,表面电荷,粒度和形态学特征。使用吸收和荧光研究检查母体分子RSB和FONS-RSB之间的对比光学性质。具有82nm粒度和负ζ电位(-33.5mV)的Fons-Rsb的球体形态显示出在研究的一系列金属离子中仅与HG2 +进行选择性和敏感相互作用,这是由荧光滴定结果揭示的。 FONS-RSB和HG2 +之间的相互作用导致FONS-RSB的荧光是因为螯合增强荧光(厨师)现象。发现异物离子的干扰不受HG2 +诱导的荧光增强的影响。使用作业和改性的Benesi-Hildebrand图来评估结合化学计量和结合常数。使用红外(IR),核磁共振(NMR),在不存在和存在的HG2 +至FONS-RSB的情况下,分析结合相互作用和梳理性质的结合相互作用和性质。此外,使用质量分析检查本研究中的感测过程的反应产物。当HG2 +添加的线性浓度分别为0-2μg/ ml和0 -100ng / ml时,发现使用本方法计算的检测限为1.729ng / ml(8.619nm)和1.68ng / ml。本方法的实际应用涉及使用具有无毒行为的A375活细胞从局部校园和HG2 +的细胞内细胞成像中收集的环境样品中HG2 +的定量测定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号