School of Resources and Environment, University of Jinan, Jinan 250022, China.
Key Laboratory of Chemical Sensing & Analysis in Universities of Shandong (University of Jinan), School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.
Biosens Bioelectron. 2014 Dec 15;62:315-9. doi: 10.1016/j.bios.2014.06.061. Epub 2014 Jul 3.
A new sandwich photoelectrochemical (PEC) sensing strategy was proposed for the first time based on the increasing photocurrent of water-soluble polythiophene sensitized g-C3N4 nanosheet (PT-Cl/g-C3N4) in the presence of copper(II) (Cu(2+)), which was doped on the surface of titanium dioxide as labels for multi-amplification. Herein, the photoactive films of PT-Cl/g-C3N4 is employed as the photoactive antibody (Ab1) immobilization matrix for the subsequent sandwich-type antibody-antigen affinity interactions. Upon the presence of antigen (Ag), greatly enhanced photocurrent could be triggered in the PEC platform by the labels of second antibody (Ab2) of Cu(2+) doped titanium dioxide (Cu(2+)-TiO2). As a result of the multi-amplification in this Cu(2+)-TiO2 enhanced PT-Cl/g-C3N4-based PEC immunoassay, it possesses excellent analytical performance. The antigen could be detected from 0.01 pg mL(-1) to 100.0 ng mL(-1) with a detection limit of 5 fg mL(-1). This work opens up g-C3N4 nanosheet applied in PEC sensing. More importantly, the strategy of specific positive effect of Cu(2+) on the photocurrent of g-C3N4 opens an alternative horizon for PEC sensing.
首次提出了一种基于在铜(II)(Cu(2+))存在下增加水溶性聚噻吩敏化 g-C3N4 纳米片(PT-Cl/g-C3N4)的光电流的新型三明治光电化学(PEC)传感策略,Cu(2+)掺杂在二氧化钛表面作为标签用于多重放大。在此,PT-Cl/g-C3N4 的光活性膜被用作随后的三明治型抗体-抗原亲和相互作用的光活性抗体(Ab1)固定基质。当存在抗原(Ag)时,掺杂铜(II)(Cu(2+)-TiO2)的第二抗体(Ab2)的标签会在 PEC 平台中触发光电流的大幅增强。由于在这种 Cu(2+)-TiO2 增强的基于 PT-Cl/g-C3N4 的 PEC 免疫分析中的多重放大,它具有出色的分析性能。该抗原可在 0.01 pg mL(-1) 至 100.0 ng mL(-1) 的范围内检测到,检测限为 5 fg mL(-1)。这项工作开启了 g-C3N4 纳米片在 PEC 传感中的应用。更重要的是,Cu(2+)对 g-C3N4 光电流的特定正效应策略为 PEC 传感开辟了另一种选择。