School of Chemistry and Chemical Engineering, Linyi University, Linyi 276005, China.
School of Chemistry and Chemical Engineering, Linyi University, Linyi 276005, China.
Biosens Bioelectron. 2017 Jun 15;92:147-153. doi: 10.1016/j.bios.2017.02.013. Epub 2017 Feb 11.
Construction of ratiometric fluorescent probe often involved in tedious multistep preparation or complicated coupling or chemical modification process. The emergence of dual emission fluorescent nanoparticles would simplify the construction process and avoids the tedious chemical coupling. Herein, we reported a facile strategy to prepare ratiometric fluorescence molecularly imprinted sensor based on dual emission nanoparticles (d-NPs) which comprised of carbon dots and gold nanoclusters for detection of Bisphenol A (BPA). D-NPs emission at 460nm and 580nm were first prepared by seed growth co-microwave method using gold nanoparticles as seeds and glucose as precursor for carbon dots. When they were applied to propose ratiometric fluorescence molecularly imprinted sensor, the preparation process was simplified, and the sensitivity of sensor was improved with detection limit of 29nM, and visualizing BPA was feasible based on the distinguish fluorescence color change. The feasibility of the developed method in real samples was successfully evaluated through the analysis of BPA in water samples with satisfactory recoveries of 95.9-98.9% and recoveries ranging from 92.6% to 98.6% in canned food samples. When detection BPA in positive feeding bottles, the results agree well with those obtained by accredited method. The developed method proposed in this work to prepare ratiometric fluorescence molecularly imprinted sensor based on dual emission nanoparticles proved to be a convenient, reliable and practical way to prepared high sensitive and selective fluorescence sensors.
比率型荧光探针的构建通常涉及繁琐的多步制备或复杂的偶联或化学修饰过程。双发射荧光纳米粒子的出现将简化构建过程,避免繁琐的化学偶联。本文报道了一种简便的策略,用于制备比率荧光分子印迹传感器,该传感器基于双发射纳米粒子(d-NPs),由碳点和金纳米簇组成,用于检测双酚 A(BPA)。首先通过种子生长共微波法,以金纳米粒子为种子,葡萄糖为碳点前体,制备了发射波长分别为 460nm 和 580nm 的 d-NPs。当它们被应用于提出比率荧光分子印迹传感器时,简化了制备过程,提高了传感器的灵敏度,检测限低至 29nM,并且可以通过区分荧光颜色变化来实现可视化 BPA。通过对水样中 BPA 的分析,成功评估了该方法在实际样品中的可行性,水样中 BPA 的回收率为 95.9-98.9%,罐头食品样品中回收率为 92.6%-98.6%。当在阳性奶瓶中检测 BPA 时,结果与经认可方法获得的结果吻合良好。本工作提出的基于双发射纳米粒子制备比率荧光分子印迹传感器的方法,被证明是一种简便、可靠和实用的方法,可制备高灵敏度和选择性的荧光传感器。