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Fabrication of graphene film composite electrochemical biosensor as a pre-screening algal toxin detection tool in the event of water contamination

机译:制备石墨烯薄膜复合电化学生物传感器作为水污染预筛分藻毒素检测工具

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摘要

In this work, we fabricated a novel graphene film composite biosensor for microcystin-LR detection as an alternative to time-consuming, expensive, non-portable and often skills-demanding conventional methods of analysis involved in water quality monitoring and assessment. Excellent linear correlation (R2 = 0.99) of the electron-transfer resistance was achieved over a wide range of microcystin-LR (MC-LR) concentration, i.e. 0.005–10 μg/L. As-prepared graphene film composite biosensors can specifically detect MC-LR with remarkable sensitivity and detection limit (2.3 ng/L) much lower than the World Health Organization (WHO) provisional guideline limit of microcystin-LR concentration (i.e. 1 μg/L) in different water sources. Their great potential can be attributed to large active surface area of graphene film and efficient charge transfer process enabled by their high conductivity. Developed graphene film composite biosensors were also successfully applied to determination of MC-LR in several environmental water samples with high detection recovery, which offers a promising possibility of large-scale manufacture of sensor tips due to their macroscopic free-standing nature, the scalable fabrication route and easily tunable size.
机译:在这项工作中,我们制造了一种用于微囊藻毒素-LR检测的新型石墨烯薄膜复合生物传感器,以替代耗时,昂贵,不可携带且经常需要技能的常规水质监测和评估分析方法。在广泛的微囊藻毒素-LR(MC-LR)浓度范围内,即0.005–10μg/ L,实现了优异的电子传递阻力线性相关性(R 2 = 0.99)。制备的石墨烯薄膜复合生物传感器可以特异性检测MC-LR,灵敏度和检测限(2.3 ng / L)远低于世界卫生组织(WHO)制定的微囊藻毒素-LR浓度暂定准则(即1μg/ L)在不同的水源中它们的巨大潜力可归因于石墨烯薄膜的大活性表面积和高导电率实现的高效电荷转移过程。发达的石墨烯薄膜复合生物传感器也成功地用于检测环境水样品中MC-LR的检测,回收率高,由于其宏观的独立性,可扩展的制造能力,因此有可能大规模生产传感器尖端。路线和容易调整的大小。

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