School of Materials and Energy, University of Electronic Science and Technology of China, 611731 Chengdu, PR China.
School of Materials and Energy, University of Electronic Science and Technology of China, 611731 Chengdu, PR China.
J Hazard Mater. 2021 Mar 5;405:124263. doi: 10.1016/j.jhazmat.2020.124263. Epub 2020 Oct 13.
Simultaneous detection of multiple heavy metal ions (HMI) is of great importance for the environmental monitoring, and the analytical tools based on multiband emissive fluorescent probes have been regarded as one of the most promising candidate for multiple HMI detection. Herein, the rod-coil amphiphilic block copolymer (BCP) with intrinsic blue fluorescence emission has been synthesized and subsequently employed to encapsulate two types of hydrophobic quantum dots (QD) with green and red fluorescence emission via the three dimensionally confined emulsion self-assembly, leading to the generation of white-emitting superparticles showing good colloidal stability and stable aqueous phase fluorescence. Furthermore, it was found that the fluorescence emission intensity of obtained superparticles can be selectively quenched by Ag, Hg, Cu and Fe ions via different mechanisms, and the four metal ions can be further discriminated according to their distinct combinational quenching effects onto three fluorescent bands of white-emitting superparticles. In addition, an analytical model was built to enable the simultaneous detection of Cu, Hg and Fe in the real sample. Basically, the current work opens the new way to fabricate fluorescent probes with multiple emission bands, which can be easily adapted to prepare more complicated QD encoded fluorescent probes for high throughput detection.
同时检测多种重金属离子(HMI)对于环境监测具有重要意义,基于多波段发射荧光探针的分析工具已被认为是多种 HMI 检测的最有前途的候选方法之一。在此,合成了具有本征蓝色荧光发射的棒状-线圈两亲嵌段共聚物(BCP),并通过三维受限乳液自组装将其包裹在两种具有绿色和红色荧光发射的疏水性量子点(QD)中,从而产生了具有良好胶体稳定性和稳定的水相荧光的白色发射超粒子。此外,发现所得超粒子的荧光发射强度可以通过不同的机制被 Ag、Hg、Cu 和 Fe 离子选择性猝灭,并且可以根据它们对白色发射超粒子的三个荧光带的不同组合猝灭效应来进一步区分这四种金属离子。此外,建立了一种分析模型,用于同时检测实际样品中的 Cu、Hg 和 Fe。基本上,本工作为制备具有多发射带的荧光探针开辟了新途径,这可容易地适应于制备更复杂的基于 QD 的编码荧光探针,以实现高通量检测。