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基于双(二硫代氨基甲酸盐)铜(II)配合物功能化碳纳米点的荧光“开启”检测汞离子。

Fluorescence "turn on" detection of mercuric ion based on bis(dithiocarbamato)copper(II) complex functionalized carbon nanodots.

机构信息

Institute of Intelligent Machines, Chinese Academy of Sciences , Hefei, Anhui 230031, China.

出版信息

Anal Chem. 2014 Jan 21;86(2):1123-30. doi: 10.1021/ac402894z. Epub 2014 Jan 9.

Abstract

A new "turn on" fluorescence nanosensor for selective Hg(2+) determination is reported based on bis(dithiocarbamato)copper(II) functionalized carbon nanodots (CuDTC2-CDs). The CuDTC2 complex was conjugated to the prepared amine-coated CDs by the condensation of carbon disulfide onto the nitrogen atoms in the surface amine groups, followed by the coordination of copper(II) to the resulting dithiocarbamate groups (DTC) and finally by the additional coordination of ammonium N-(dithicarbaxy) sarcosine (DTCS) to form the CuDTC2-complexing CDs. The CuDTC2 complex at surface strongly quenched the bright-blue fluorescence of the CDs by a combination of electron transfer and energy transfer mechanism. Hg(2+) could immediately switch on the fluorescence of the CuDTC2-CDs by promptly displacing the Cu(2+) in the CuDTC2 complex and thus shutting down the energy transfer pathway, in which the sensitive limit for Hg(2+) as low as 4 ppb was reached. Moreover, a paper-based sensor has been fabricated by printing the CuDTC2-CDs probe ink on a piece of cellulose acetate paper using a commercial inkjet printer. The fluorescence "turn on" on the paper provided the most conveniently visual detection of aqueous Hg(2+) ions by the observation with naked eye. The very simple and effective strategy reported here facilitates the development of portable and reliable fluorescence nanosensors for the determination of Hg(2+) in real samples.

摘要

一种新的基于双(二硫代氨基甲酸盐)铜(II)功能化碳点(CuDTC2-CDs)的选择性测定 Hg(2+)的荧光纳米传感器被报道。CuDTC2 配合物通过二硫化碳与表面胺基中的氮原子缩合,连接到制备的胺涂层的 CDs 上,然后铜(II)与所得的二硫代氨基甲酸盐(DTC)配位,最后由铵 N-(二硫代氨基甲酰基)肌氨酸(DTCS)配位形成 CuDTC2 配合物的 CDs。表面上的 CuDTC2 配合物通过电子转移和能量转移机制强烈猝灭了 CDs 的亮蓝色荧光。Hg(2+)可以立即通过迅速取代 CuDTC2 配合物中的 Cu(2+),从而关闭能量转移途径,从而开启 CuDTC2-CDs 的荧光,达到低至 4 ppb 的 Hg(2+)的灵敏极限。此外,通过使用商业喷墨打印机在醋酸纤维素纸上打印 CuDTC2-CDs 探针墨水,制备了基于纸张的传感器。在纸上的荧光“开启”提供了最方便的视觉检测水溶液中的 Hg(2+)离子,通过肉眼观察。这里报道的非常简单有效的策略促进了用于测定实际样品中 Hg(2+)的便携式和可靠荧光纳米传感器的发展。

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