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A novel anodic electrochemiluminescence behavior of sulfur-doped carbon nitride nanosheets in the presence of nitrogen-doped carbon dots and its application for detecting folic acid

机译:氮掺杂碳点存在下硫掺杂碳氮化碳含量的一种新型阳极电化学行为及其检测叶酸的应用

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摘要

The application of carbon dots as a coreactant for Ru(bpy)(3)(2+) (where bpy is 2,2 '-bipyridine) electrochemiluminescence (ECL) has been widely studied. However, the high cost of Ru(bpy)(3)(2+) and its derivatives has prohibited its widespread use in ECL biosensors. Herein, a novel anodic ECL system based on sulfur-doped graphitic carbon nitride nanosheets (S-g-C3N4 NSs) and nitrogen-doped carbon dots (N-CDs) is presented. In this ECL system, N-CDs serve as a new ECL coreactant that can significantly enhance the anodic ECL signal of S-g-C3N4 NSs (approximately 83 times) under optimal conditions. The possible ECL response mechanism of the S-g-C3N4 NSs/N-CDs system is proposed in detail on the basis of cyclic voltammograms, ECL-time curves, and ECL spectra. Furthermore, the ECL signal of the S-g-C3N4 NSs/N-CDs system was quenched by folic acid (FA), which was chosen as a model analyte to study the potential application of the new ECL system. The ECL intensity decreased linearly with the concentration of FA in the range from 0.05 to 200 mu M. The detection limit for FA measurement is 16 nM (signal-to-noise ratio of 3). The proposed new ECL system has many advantages over traditional approaches, such as low toxicity and excellent biocompatibility. Especially, the proposed approach can detect FA in diluted human serum samples with satisfactory recoveries, indicating promising application for bioanalysis.
机译:碳点作为Ru(BPY)(3)(2+)(其中BPY是2,2'-Biphyridine)电化学发光(ECL)的应用。然而,Ru(BPY)(3)(2+)及其衍生物的高成本禁止在ECL生物传感器中广泛使用。这里,提出了一种基于硫掺杂石墨碳氮化碳纳米片(S-G-C3N4 NSS)和氮掺杂碳点(N-CD)的新型阳极ECL系统。在该ECL系统中,N-CDS用作新的ECL固定剂,可以在最佳条件下显着增强S-G-C3N4 NSS(约83次)的阳极ECL信号。基于循环伏安图,ECL-TIME曲线和ECL光谱,详细提出了S-G-C3N4 NSS / N-CDS系统的可能的ECL响应机制。此外,通过叶酸(FA)猝灭S-G-C3N4 NSS / N-CDS系统的ECL信号,其被选择为研究新ECL系统的潜在应用的模型分析物。 ECL强度随着FA的浓度线性降低,范围为0.05至200μm。FA测量的检测限为16nm(信噪比为3)。拟议的新ECL系统具有与传统方法相比许多优势,如低毒性和优异的生物相容性。特别是,所提出的方法可以以令人满意的回收率检测稀释的人血清样品中的FA,表明对生物分析有前途的应用。

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