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荧光纳米探针选择性检测 Co:环境样品和生物活性分析的诊断方法。

Selective detection of Co by fluorescent nano probe: Diagnostic approach for analysis of environmental samples and biological activities.

机构信息

Dept. of Chemistry, Kongju National University, Gongju, Chungnam 32588, Republic of Korea.

Department of Chemistry, Shivaji University, Kolhapur 416004, Maharashtra, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jun 5;198:136-144. doi: 10.1016/j.saa.2018.03.004. Epub 2018 Mar 3.

Abstract

Nowadays scientist over the world are engaging to put forth improved methods to detect metal ion in an aqueous medium based on fluorescence studies. A simple, selective and sensitive method was proposed for detection of Co ion using fluorescent organic nanoparticles. We synthesized a fluorescent small molecule viz. 4,4'-{benzene-1,4-diylbis-[(Z)methylylidenenitrilo]}dibenzoic acid (BMBA) to explore its suitability as sensor for Co ion and biocompatibility in form of nanoparticles. Fluorescence nanoparticles (BMBANPs) prepared by simple reprecipitation method. Aggregation induced enhanced emission of BMBANPs exhibits the narrower particle size of 68nm and sphere shape morphology. The selective fluorescence quenching was observed by addition of Co and does not affected by presence of other coexisting ion solutions. The photo-physical properties, viz. UV-absorption, fluorescence emission, and lifetime measurements are in support of ligand-metal interaction followed by static fluorescence quenching phenomenon in emission of BMBANPs. Finally, we develop a simple analytical method for selective and sensitive determination of Co ion in environmental samples. The cell culture E. coli, Bacillus sps., and M. tuberculosis HRV strain in the vicinity of BMBANPs indicates virtuous anti-bacterial and anti-tuberculosis activity which is of additional novel application shown by prepared nanoparticles.

摘要

如今,全世界的科学家都致力于提出改进的方法,基于荧光研究来检测水溶液中的金属离子。本文提出了一种使用荧光有机纳米粒子检测 Co 离子的简单、选择性和灵敏的方法。我们合成了一种荧光小分子,即 4,4'-{苯-1,4-二基双[(Z)亚甲基亚氨基]二苯甲酸(BMBA),以探索其作为 Co 离子传感器的适用性以及以纳米粒子形式的生物相容性。通过简单的再沉淀法制备荧光纳米粒子(BMBANPs)。BMBANPs 的聚集诱导增强发射显示出更窄的粒径为 68nm 和球形形态。通过添加 Co 观察到选择性荧光猝灭,并且不受其他共存离子溶液的影响。光物理性质,即 UV 吸收、荧光发射和寿命测量,支持配体-金属相互作用,随后在 BMBANPs 的发射中出现静态荧光猝灭现象。最后,我们开发了一种简单的分析方法,用于选择性和灵敏地测定环境样品中的 Co 离子。BMBANPs 附近的大肠杆菌、芽孢杆菌和结核分枝杆菌 HRV 菌株的细胞培养表明,制备的纳米粒子具有良好的抗菌和抗结核活性,这是其额外的新颖应用。

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