使用基于 4-氨基-1,8-萘二甲酰亚胺特罗格氏碱荧光团的发光 Zn(II) 配位聚合物对抗生素进行差异荧光化学传感

Chemistry Pub Date : 2024-02-07 DOI:10.3390/chemistry6010011
Purti Patel, Mannanthara Kunhumon Noushija, S. Shanmugaraju
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引用次数: 0

摘要

设计和开发用于超痕量检测环境污染物和污染物质的有用化学传感器是一个热门研究领域。在此,我们报告了一种新型纳米级发射型 Zn(II)配位聚合物(TB-Zn-CP),用于对水中的各种抗生素进行差分荧光传感。TB-Zn-CP 是利用独特的 V 形绿色发射型 4-氨基-1,8-萘二甲酰亚胺特罗格氏碱(TBNap)荧光团合成的。通过各种标准光谱和显微镜技术对 TB-Zn-CP 的结构和形态特征进行了表征。水中的荧光滴定研究表明,TB-Zn-CP 具有显著的灵敏度和差异荧光传感特性,可用于快速检测不同的抗生素。在不同的抗生素中,氯霉素(CRP)、1,2-二甲基-5-硝基咪唑(DMZ)和磺胺甲嗪(SMZ)的荧光淬灭效率最高,检测灵敏度也较高。TB-Zn-CP 的差异传感能力还体现在可视的颜色变化上。斯特恩-伏尔默淬灭常数 KSV 被确定为 103-104 M-1 量级,灵敏度则达到纳摩尔(10-9 M)水平。所有这些结果都证实,TB-Zn-CP 可以作为一种潜在而实用的聚合物传感器,用于水中不同抗生素的荧光和视觉差分检测。
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Differential Fluorescent Chemosensing of Antibiotics Using a Luminescent Zn(II) Coordination Polymer Based on a 4-Amino-1,8-naphthalimide Tröger’s Base Fluorophore
The design and development of useful chemosensors for the ultra-trace detection of environmental pollutants and contaminants is a topical area of research. Herein, we report a new nanoscale emissive Zn(II) coordination polymer (TB-Zn-CP) for differential fluorescence sensing of various antibiotics in water. TB-Zn-CP was synthesized using a unique V-shaped green emitting 4-amino-1,8-naphthalimide Tröger’s base (TBNap) fluorophore. The structural and morphological features of TB-Zn-CP were characterized by various standard spectroscopic and microscopy techniques. The fluorescence titration studies in water demonstrated a remarkable sensitivity and differential fluorescence sensing properties of TB-Zn-CP for the fast detection of different antibiotics. Among different antibiotics, chloramphenicol (CRP), 1,2-dimethyl-5-nitroimidazole (DMZ), and sulfamethazine (SMZ) displayed the highest fluorescence-quenching efficiency and superior sensitivity in their detection. The differential sensing capability of TB-Zn-CP was also indicated by visualizable color changes. The Stern–Volmer quenching constant KSV was determined to be in the order of 103–104 M−1, and the sensitivity was shown to be at a nanomolar (10−9 M) level. All these results confirm that TB-Zn-CP can be a potential and practically useful polymeric sensor for differential fluorescence and visual detection of different antibiotics in water.
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