Gong Jiawei, Tang Hongliang, Luo Xuan, Zhou Huaxu, Lin Xueting, Wang Kailong, Yan Fei, Xi Fengna, Liu Jiyang
Department of Chemistry, Key Laboratory of Surface and 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. 2021 Nov 22;9:770512. doi: 10.3389/fchem.2021.770512. eCollection 2021.
Three-dimensional (3D) electrochemiluminescence (ECL) platform with high sensitivity and good anti-fouling is highly desirable for direct and sensitive analysis of complex samples. Herein, a novel ECL-sensing platform is demonstrated based on the equipment of vertically ordered mesoporous silica-nanochannel films (VMSF) on monolithic and macroporous 3D graphene (3DG). Through electrografting of 3-aminopropyltriethoxysilane (APTES) onto 3DG as molecular glue, VMSF grown by electrochemically assisted self-assembly (EASA) method fully covers 3DG surface and displays high stability. The developed VMSF/APTES/3DG sensor exhibits highly sensitized ECL response of tris(2,2'-bipyridyl) ruthenium (Ru (bpy) ) taking advantages of the unique characteristics of 3DG (high active area and conductivity) and VMSF nanochannels (strong electrostatic enrichment). The VMSF/APTES/3DG sensor is applied to sensitively detect an important environmental pollutant (4-chlorophenol, with limit of detection or LOD of 30.3 nM) in term of its quenching effect (ECL signal-off mode) toward ECL of Ru (bpy) /tri-n-propylamine (TPrA). The VMSF/APTES/3DG sensor can also sensitively detect the most effective antihistamines chlorpheniramine (with LOD of 430 nM) using ECL signal-on mode because it acts as co-reactant to promote the ECL of Ru (bpy) . Combined with the excellent antifouling ability of VMSF, the sensor can also realize the analysis of actual environmental (lake water) and pharmaceutical (pharmacy tablet) samples. The proposed 3D ECL sensor may open new avenues to develop highly sensitive ECL-sensing platform.
具有高灵敏度和良好抗污染性能的三维(3D)电化学发光(ECL)平台对于复杂样品的直接和灵敏分析非常理想。在此,基于在整体式大孔3D石墨烯(3DG)上制备垂直有序介孔二氧化硅纳米通道膜(VMSF),展示了一种新型的ECL传感平台。通过将3-氨丙基三乙氧基硅烷(APTES)电接枝到3DG上作为分子胶水,利用电化学辅助自组装(EASA)方法生长的VMSF完全覆盖3DG表面并显示出高稳定性。所开发的VMSF/APTES/3DG传感器利用3DG的独特特性(高活性面积和导电性)和VMSF纳米通道(强静电富集),对三(2,2'-联吡啶)钌(Ru(bpy))表现出高度灵敏的ECL响应。VMSF/APTES/3DG传感器基于其对Ru(bpy)/三正丙胺(TPrA)的ECL猝灭效应(ECL信号关闭模式),被应用于灵敏检测一种重要的环境污染物(4-氯苯酚,检测限或LOD为30.3 nM)。VMSF/APTES/3DG传感器还可以利用ECL信号开启模式灵敏检测最有效的抗组胺药氯苯那敏(LOD为430 nM),因为它作为共反应物促进Ru(bpy)的ECL。结合VMSF出色的抗污染能力,该传感器还可以实现对实际环境(湖水)和药物(药片片剂)样品的分析。所提出的3D ECL传感器可能为开发高灵敏度ECL传感平台开辟新途径。