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Ag@Ag3PO4 微立方体的类氧化酶模拟物作为用于超灵敏和选择性检测 Hg(2+) 的智能探针

Oxidase-like mimic of Ag@Ag3PO4 microcubes as a smart probe for ultrasensitive and selective Hg(2+) detection.

作者信息

Chai Dong-Feng, Ma Zhuo, Qiu Yunfeng, Lv Yu-Guang, Liu Hong, Song Chao-Yu, Gao Guang-Gang

机构信息

Department of Chemistry, College of Pharmacy, Jiamusi University, Jiamusi 154004, China.

出版信息

Dalton Trans. 2016 Feb 21;45(7):3048-54. doi: 10.1039/c5dt04192a. Epub 2016 Jan 14.

Abstract

An oxidase-like mimic system based on facilely synthesized Ag@Ag3PO4 microcubes (Ag@Ag3PO4MCs) was designed and utilized to detect mercury ions with high selectivity and ultrasensitivity. Ag@Ag3PO4MCs with an average size of ca. 1.6 μm were synthesized by the reaction of Ag(NH3)2 complex and Na2HPO4 and subsequent photoreduction under ultraviolet light. The as-prepared Ag@Ag3PO4MCs can effectively catalyze the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB) and o-phenylenediamine (OPD) in the presence of dissolved oxygen in slightly acidic solution, exhibiting oxidase-like activities rather than peroxidase-like activity. Interestingly, the introduction of Ag nanoparticles (AgNPs) on the surfaces of Ag3PO4MCs can dramatically enhance the oxidase-like activities due to a synergistic effect between AgNPs and Ag3PO4MCs, as evidenced by the faster oxidation speed of TMB and OPD than that of native Ag3PO4MCs in the presence of dissolved oxygen. The enzyme kinetics can be well-explained by the Michaelis-Menten equation. As "poisoning" inhibitor, Hg(2+) ions can inhibit the enzyme reaction catalyzed by Ag3PO4MCs or Ag@Ag3PO4MCs. On the basis of this effect, a colorimetric Hg(2+) sensor was developed by the enzyme inhibition reaction of Ag3PO4MCs or Ag@Ag3PO4MCs. The excellent specific interaction of Hg-Ag or Hg(2+)-Ag(+) provides high selectivity for Hg(2+) over interfering metal ions. Meanwhile, the sensitivity of this sensor to Hg(2+) is extremely excellent with a limit of detection as low as 0.253 nM for Ag@Ag3PO4MCs. Considering the advantages of low detection limit, low cost, facile preparation, and visualization, the colorimetric Ag@Ag3PO4MCs sensor shows high promise for the testing of Hg(2+) in water samples.

摘要

设计并利用一种基于简便合成的Ag@Ag3PO4微立方体(Ag@Ag3PO4MCs)的类氧化酶模拟系统,用于高选择性和超灵敏地检测汞离子。通过Ag(NH3)2络合物与Na2HPO4反应并随后在紫外光下进行光还原,合成了平均尺寸约为1.6μm的Ag@Ag3PO4MCs。所制备的Ag@Ag3PO4MCs在微酸性溶液中存在溶解氧的情况下,能够有效催化3,3',5,5'-四甲基联苯胺(TMB)和邻苯二胺(OPD)的氧化,表现出类氧化酶活性而非类过氧化物酶活性。有趣的是,由于Ag纳米颗粒(AgNPs)与Ag3PO4MCs之间的协同效应,在Ag3PO4MCs表面引入AgNPs可显著增强类氧化酶活性,这在溶解氧存在下TMB和OPD的氧化速度比天然Ag3PO4MCs更快得到了证明。酶动力学可用米氏方程很好地解释。作为“中毒”抑制剂,Hg(2+)离子可抑制由Ag3PO4MCs或Ag@Ag3PO4MCs催化的酶反应。基于这种效应,通过Ag3PO4MCs或Ag@Ag3PO4MCs的酶抑制反应开发了一种比色Hg(2+)传感器。Hg-Ag或Hg(2+)-Ag(+)之间出色的特异性相互作用为Hg(2+)提供了高于干扰金属离子的高选择性。同时,该传感器对Hg(2+)的灵敏度极其出色,对于Ag@Ag3PO4MCs,检测限低至0.253 nM。考虑到检测限低(、成本低、制备简便和可视化等优点,比色Ag@Ag3PO4MCs传感器在水样中Hg(2+)的检测方面显示出很高的应用前景。

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