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基于石墨烯量子点-适配体探针和氧化石墨烯平台的荧光纳米传感器用于检测铅(II)离子。

A fluorescent nanosensor based on graphene quantum dots-aptamer probe and graphene oxide platform for detection of lead (II) ion.

机构信息

College of Chemistry and Life Science, Zhejiang Normal University, Jinhua 321004, China.

College of Chemistry and Life Science, Zhejiang Normal University, Jinhua 321004, China.

出版信息

Biosens Bioelectron. 2015 Jun 15;68:225-231. doi: 10.1016/j.bios.2014.12.057. Epub 2014 Dec 29.

Abstract

The sensitive detection of heavy metal ions in the organism and aquatic ecosystem using nanosensors based on environment friendly and biocompatible materials still remains a challenge. A fluorescent turn-on nanosensor for lead (II) detection based on biocompatible graphene quantum dots and graphene oxide by employment of Pb(2+)-induced G-quadruplex formation was reported. Graphene quantum dots with high quantum yield, good biocompatibility were prepared and served as the fluorophore of Pb(2+) probe. Fluorescence turn-off of graphene quantum dots is easily achieved through efficient photoinduced electron transfer between graphene quantum dots and graphene oxide, and subsequent fluorescence turn-on process is due to the formation of G-quadraplex aptamer-Pb(2+) complex triggered by the addition of Pb(2+). This nanosensor can distinguish Pb(2+) ion from other ions with high sensitivity and good reproducibility. The detection method based on this nanosensor possesses a fast response time of one minute, a broad linear span of up to 400.0 nM and ultralow detection limit of 0.6 nM.

摘要

利用基于环保和生物相容材料的纳米传感器在生物体和水生生态系统中对重金属离子进行灵敏检测仍然是一个挑战。本研究报道了一种基于生物相容的石墨烯量子点和氧化石墨烯的荧光开启型纳米传感器,用于检测 Pb(II)。高量子产率、良好生物相容性的石墨烯量子点被制备出来,并作为 Pb(2+)探针的荧光团。通过石墨烯量子点和氧化石墨烯之间有效的光诱导电子转移,很容易实现石墨烯量子点的荧光猝灭,随后的荧光开启过程是由于加入 Pb(2+)后形成的 G-四链体适体-Pb(2+)复合物引发的。该纳米传感器能够高灵敏度和良好重现性地区分 Pb(2+)离子与其他离子。基于该纳米传感器的检测方法具有快速的响应时间(一分钟)、高达 400.0 nM 的宽线性范围和超低的检测限(0.6 nM)。

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