Su Ruobing, Tang Hongliang, Xi Fengna
Department of Chemistry, Key Laboratory of Surface & Interface Science of Polymer Materials of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou, China.
Affiliated Fangchenggang Hospital, Guangxi University of Chinese Medicine, Fangchenggang, China.
Front Chem. 2022 Aug 5;10:954748. doi: 10.3389/fchem.2022.954748. eCollection 2022.
Convenient, rapid and sensitive detection of p-nitrophenol (p-NP), one of the priority environmental pollutants, in environmental samples is of great significance. Electrochemical sensor with simple fabrication process, high sensitivity and selectivity, good antifouling, and regeneration performance is highly desirable. Herein, an electrochemical sensing platform is demonstrated based on the integration of vertically-ordered mesoporous silica-nanochannel film (VMSF) on electrochemical pre-activated glassy carbon electrode (p-GCE), which is able to realize ultrasensitive detection of p-NP in environmental samples. Electrochemical pre-activation of GCE is achieved through a simple and green electrochemical polarization process including anodic oxidation at high voltage and the following cathodic reduction at low voltage. The p-GCE possesses enhanced active area and introduced active sites, and enables stable binding of VMSF. VMSF is easily grown on p-GCE through the electrochemically assisted self-assembly (EASA) method within 10 s. Owing to the hydrogen bonding between silanol groups and p-NP, VMSF nanochannels display strong enrichment effect for the detection of p-NP. The developed VMSF/p-GCE sensor can achieve sensitive detection of p-NP ranging from 10 nM to 1 μM and from 1 to 30 μM with a limit of detection (LOD) of 9.4 nM. Considering the antifouling ability of VMSF, detection of p-NP in pond water is achieved.
便捷、快速且灵敏地检测环境样品中的对硝基苯酚(p-NP)具有重要意义,对硝基苯酚是优先控制的环境污染物之一。具有制备工艺简单、灵敏度和选择性高、良好的抗污染及再生性能的电化学传感器是非常理想的。在此,基于在电化学预活化玻碳电极(p-GCE)上集成垂直有序介孔二氧化硅纳米通道膜(VMSF),展示了一种电化学传感平台,该平台能够实现对环境样品中p-NP的超灵敏检测。通过简单且绿色的电化学极化过程实现玻碳电极的电化学预活化,该过程包括高压阳极氧化以及随后的低压阴极还原。p-GCE具有增大的活性面积和引入的活性位点,并能使VMSF稳定结合。VMSF通过电化学辅助自组装(EASA)方法在10秒内很容易地生长在p-GCE上。由于硅醇基团与p-NP之间的氢键作用,VMSF纳米通道对p-NP的检测显示出很强的富集效应。所开发的VMSF/p-GCE传感器能够灵敏地检测浓度范围为10 nM至1 μM以及1至30 μM的p-NP,检测限(LOD)为9.4 nM。考虑到VMSF的抗污染能力,实现了对池塘水中p-NP的检测。