Xiao Jiaxin, Zhu Shumin, Bu Lingjun, Chen Yuan, Wu Ruoxi, Zhou Shiqing
Hunan Engineering Research Center of Water Security Technology and Application, College of Civil Engineering, Hunan University Changsha 410082 PR China
Key Laboratory of Building Safety and Energy Efficiency, Ministry of Education, Hunan University Changsha 410082 PR China.
RSC Adv. 2023 Sep 11;13(39):27203-27211. doi: 10.1039/d3ra04039a. eCollection 2023 Sep 8.
Halonitrophenols (HNPs) are an emerging type of aromatic disinfection byproduct, with detected concentrations of ∼nmol L in source water and drinking water. Currently, there are no standard methods for identifying HNPs, and most of the reported methods are time-consuming and equipment-dependent. A core-shell metal-organic framework (MOF) based electrochemical sensor (Ag/ZIF-8@ZIF-67) capable of detecting 2,6-dichloro-4-nitrophenol (2,6-DCNP) is reported in this study. The electrochemical sensor obtains the concentration of 2,6-DCNP by detecting the peak current passing through the sensor. In this sensor, Ag nanoparticles (AgNPs) play a key role in electrochemical sensing by reducing nitro groups electron transfer, and porous structure with a large surface area is offered by ZIF-8@ZIF-67. The cyclic voltammetry (CV) response of Ag/ZIF-8@ZIF-67 was found to be approximately 1.75 times and 2.23 times greater than that of Ag/ZIF-8 and Ag/ZIF-67, respectively, suggesting an ideal synergistic effect of the core-shell structures. The Ag/ZIF-8@ZIF-67 sensor exhibited exceptional sensitivity to 2,6-DCNP, exhibiting a broad linear response range ( = 0.992) from 240 nmol L to 288 μmol L and a low detection limit of 20 nmol L. Furthermore, the sensor exhibited good anti-interference for isomers and common distractors in water, excellent stability and reproducibility, and high recovery in actual water samples. Our reported sensor gives a novel strategy for sensitive, selective, and detection of 2,6-DCNP in practical analysis.
卤代硝基酚(HNPs)是一种新型的芳香族消毒副产物,在源水和饮用水中的检测浓度约为纳摩尔/升。目前,尚无鉴定HNPs的标准方法,且大多数已报道的方法耗时且依赖设备。本研究报道了一种基于核壳金属有机框架(MOF)的电化学传感器(Ag/ZIF-8@ZIF-67),该传感器能够检测2,6-二氯-4-硝基酚(2,6-DCNP)。该电化学传感器通过检测流经传感器的峰值电流来获取2,6-DCNP的浓度。在该传感器中,银纳米颗粒(AgNPs)通过还原硝基促进电子转移,在电化学传感中起关键作用,而ZIF-8@ZIF-67提供了具有大表面积的多孔结构。研究发现,Ag/ZIF-8@ZIF-67的循环伏安法(CV)响应分别比Ag/ZIF-8和Ag/ZIF-67的响应大1.75倍和2.23倍,表明核壳结构具有理想的协同效应。Ag/ZIF-8@ZIF-67传感器对2,6-DCNP表现出极高的灵敏度,在240纳摩尔/升至288微摩尔/升的范围内呈现出较宽的线性响应范围(=0.992),检测限低至20纳摩尔/升。此外,该传感器对水中的异构体和常见干扰物具有良好的抗干扰能力、出色的稳定性和重现性,在实际水样中具有较高的回收率。我们报道的传感器为实际分析中灵敏、选择性地检测2,6-DCNP提供了一种新策略。