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利用智能核黄素-5'-磷酸/铕配位聚合物对化学和物理刺激进行多功能荧光传感

Multifunctional fluorescent sensing of chemical and physical stimuli using smart riboflavin-5'-phosphate/Eu coordination polymers.

作者信息

Xue Shi-Fan, Zhang Jing-Fei, Chen Zi-Han, Han Xin-Yue, Zhang Min, Shi Guoyue

机构信息

Lab of Biochemical Sensing Technology, School of Chemistry and Molecular Engineering, Shanghai Key Laboratory for Urban Ecological Processes and Eco-Restoration, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China.

Lab of Biochemical Sensing Technology, School of Chemistry and Molecular Engineering, Shanghai Key Laboratory for Urban Ecological Processes and Eco-Restoration, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China.

出版信息

Anal Chim Acta. 2018 Jul 5;1012:74-81. doi: 10.1016/j.aca.2018.01.038. Epub 2018 Feb 9.

Abstract

A novel type of stimuli-responsive fluorescent polymers has been developed via the self-assembly of riboflavin-5'-phosphate (RiP) as ligand and europium (III) (Eu) as central metal ion coordinated with the ligand. The as-prepared RiP/Eu coordination polymers (RiP/Eu CPs) are smart and multifunctional for respectively responding to chemical and physical stimuli, in which RiP acts as the stimuli-responsive fluorescent signal indicator. For sensing chemical stimuli, 2,6-pyridinedicarboxylic acid (DPA, an anthrax biomarker) having higher bonding force towards Eu can grab it from smart RiP/Eu CPs through competition reaction, resulting in the release of RiP for highly sensitive and selective DPA monitoring in a mix-and-read fluorescent enhancement format, and the detection limit is as low as 41.5 nM. Density functional theory (DFT) calculations has been also performed to verify the DPA sensing principle. For sensing physical stimuli, the smart RiP/Eu CPs can be acting as a novel sensory probe for the determination of temperature from 10 °C to 40 °C based on the thermal-induced disruption of the binding between Eu and RiP and the disassembly of the smart RiP/Eu CPs accompanying with the recovery of the fluorescence of RiP. This work establishes an effective platform for multifunctional sensing of chemical and physical stimuli utilizing both smart lanthanide nanoscale coordination polymers (LNCPs) and novel sensing strategies.

摘要

通过将核黄素-5'-磷酸(RiP)作为配体与铕(III)(Eu)作为中心金属离子进行配位,开发出了一种新型的刺激响应型荧光聚合物。所制备的RiP/Eu配位聚合物(RiP/Eu CPs)具有智能和多功能性,可分别响应化学和物理刺激,其中RiP充当刺激响应型荧光信号指示剂。为了检测化学刺激,对Eu具有更高结合力的2,6-吡啶二甲酸(DPA,一种炭疽生物标志物)可通过竞争反应从智能RiP/Eu CPs中夺取Eu,导致RiP释放,从而以混合读取荧光增强的形式对DPA进行高灵敏度和选择性监测,检测限低至41.5 nM。还进行了密度泛函理论(DFT)计算以验证DPA传感原理。为了检测物理刺激,智能RiP/Eu CPs可作为一种新型传感探针,基于热诱导的Eu与RiP之间结合的破坏以及智能RiP/Eu CPs的解体伴随RiP荧光的恢复,用于测定10°C至40°C的温度。这项工作利用智能镧系纳米级配位聚合物(LNCPs)和新型传感策略建立了一个用于化学和物理刺激多功能传感的有效平台。

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