College of Chemistry and Chemical Engineering, Yantai University, Yantai 264005, China.
J Agric Food Chem. 2020 Oct 7;68(40):11301-11308. doi: 10.1021/acs.jafc.0c04275. Epub 2020 Sep 25.
In this paper, a novel and facile synthetic method of 3-mercaptopropionic acid functionalized copper nanoclusters with aggregation-induced emission (AIE) induced by Cu (Cu@MPA-Cu NCs) was developed by a one-pot reaction as a fluorescent probe for the detection of sulfide ion (S). The prepared Cu@MPA-Cu NCs behaved as aggregated clusters and had strong pink fluorescence under 365 nm UV light with excellent fluorescence emission at 610 nm. The quantum yield increased from 0.56% to 4.8% before and after Cu added. The presence of S would strongly bind to Cu, which caused the structure of the aggregated Cu@MPA-Cu NCs to be destroyed and then the fluorescence quenched. On the basis of this principle, a fluorescent probe was constructed for the detection of S with a very good linearity in the range 0-600 μM ( = 0.9843) and a detection limit of 26.3 nM. Finally, the nanohybrids were successfully demonstrated for the application in the selective detection of S in food additives. This study essentially paved a new avenue for effectively developing an easy sensor platform for S measurements in food additives.
本文开发了一种新颖且简便的通过一锅反应合成巯基丙酸功能化铜纳米簇(Cu@MPA-Cu NCs)的方法,该纳米簇具有聚集诱导发射(AIE)特性,可作为荧光探针用于检测硫化物离子(S)。所制备的 Cu@MPA-Cu NCs 呈聚集态簇,在 365nm 紫外光下呈现强烈的粉红色荧光,在 610nm 处具有优异的荧光发射。加入 Cu 前后,量子产率从 0.56%增加到 4.8%。S 的存在会与 Cu 强烈结合,导致聚集的 Cu@MPA-Cu NCs 的结构被破坏,从而导致荧光猝灭。基于这一原理,构建了一种用于检测 S 的荧光探针,在 0-600μM 范围内具有很好的线性关系(r = 0.9843),检测限为 26.3nM。最后,该纳米杂化物成功应用于食品添加剂中 S 的选择性检测。这项研究为有效开发用于食品添加剂中 S 测量的简易传感器平台开辟了新途径。