Feng Junqi, Zheng Yanyan, Luo Tao, Xi Fengna, Lai Hao
Guangxi Medical University Cancer Hospital, Guangxi Medical University Nanning 530021 China
School of Chemistry and Chemical Engineering, Zhejiang Sci-Tech University Hangzhou 310018 China
RSC Adv. 2024 Sep 12;14(39):28976-28983. doi: 10.1039/d4ra03623a. eCollection 2024 Sep 4.
The development of simple, rapid, and sensitive methods for detecting pesticide in environmental and food samples holds significant importance. Electrochemiluminescence (ECL) sensing platforms with high resistance to interference and contamination, and reduced consumption of ECL emitters, are highly desirable for such applications. In this work, we present an ECL sensing platform based on a graphitic carbon nitride nanosheets (CNNS) supported vertically ordered mesoporous silica film (VMSF) modified glassy carbon electrode (GCE) for the highly sensitive detection of the environmental pollutant 2,4,6-trichlorophenol (TCP) and the broad-spectrum insecticide prochloraz. Two-dimensional (2D) CNNS were synthesized by exfoliating bulk graphitic carbon nitride (g-CN) using concentrated sulfuric acid, serving as a novel conductive and adhesive layer for the growth of a stable VMSF on GCE an electrochemical assistance self-assembly (EASA) method to prepare VMSF/CNNS/GCE. The electrostatic enrichment capability of VMSF nanochannels for the positively charged ECL emitter tris(2,2'-bipyridyl)ruthenium(ii) (Ru(bpy) ) realized stable and significantly enhanced ECL signals at a low concentration of Ru(bpy) (10 μM). Based on the quenching effect of TCP on the ECL signal of Ru(bpy) , highly sensitive ECL detection of TCP was achieved by the VMSF/CNNS/GCE with a linear range from 10 nM to 0.7 mM and a low detection limit (DL) of 2.2 nM. As the metabolic end product of prochloraz is TCP, indirect ECL detection of prochloraz was also accomplished by measuring the produced TCP. Combined with anti-fouling and anti-interference abilities, as well as signal amplification of VMSF, the developed VMSF/CNNS/GCE sensor enabled the sensitive ECL detection of TCP in pond water and prochloraz in orange peel extract.
开发用于检测环境和食品样品中农药的简单、快速且灵敏的方法具有重要意义。对于此类应用而言,具有高抗干扰和抗污染能力且减少电化学发光(ECL)发射体消耗的ECL传感平台是非常理想的。在这项工作中,我们提出了一种基于垂直有序介孔二氧化硅膜(VMSF)修饰玻碳电极(GCE)负载的石墨相氮化碳纳米片(CNNS)的ECL传感平台,用于高灵敏检测环境污染物2,4,6 - 三氯苯酚(TCP)和广谱杀虫剂咪鲜胺。通过用浓硫酸剥离块状石墨相氮化碳(g - CN)合成二维(2D)CNNS,其作为在GCE上生长稳定VMSF的新型导电和粘附层,采用电化学辅助自组装(EASA)方法制备VMSF/CNNS/GCE。VMSF纳米通道对带正电的ECL发射体三(2,2'-联吡啶)钌(II)(Ru(bpy) )的静电富集能力,在低浓度Ru(bpy) (10 μM)下实现了稳定且显著增强的ECL信号。基于TCP对Ru(bpy) 的ECL信号的猝灭效应,VMSF/CNNS/GCE实现了对TCP的高灵敏ECL检测,线性范围为10 nM至0.7 mM,检测限(DL)低至2.2 nM。由于咪鲜胺的代谢终产物是TCP,通过测量产生的TCP也实现了对咪鲜胺的间接ECL检测。结合抗污和抗干扰能力以及VMSF的信号放大作用,所开发的VMSF/CNNS/GCE传感器能够灵敏地ECL检测池塘水中的TCP和橙皮提取物中的咪鲜胺。