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Single Microcystis Detection Through Electrochemical Collision Events on Ultramicroelectrodes

机译:通过超微电极上通过电化学碰撞事件检测单微囊纤维检测

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This study introduces the electrochemical detection of a single microcystis on an Au ultramicroelectrode based on single-entity electrochemistry.The electrochemical collisions occur when the microcystis is adsorbed on the electrode surface.This hinders the oxidation of the electroactive redox species in the solution,thus making the current decrease like a staircase.In this experiment,the current decrease caused by the collision which requires an appropriate concentration of the redox species and initial potential,providing information on migration effect by zeta-potential,and collision frequency.Comparison of the simulation results of the finite element method and the experimental results suggested that the staircase current decrease caused by the microcystis can occur due to collision not only on the electrode surface but also on the surrounding regions of the electrode surface(i.e.,the active area).These results suggest various applications of the single-entity cell detection using the electrochemical method for real-time analysis.
机译:本研究基于单体电化学原理,在金超微电极上对单个微囊藻进行电化学检测。当微囊藻吸附在电极表面时,会发生电化学碰撞。这阻碍了溶液中电活性氧化还原物种的氧化,从而使电流像楼梯一样下降。在本实验中,碰撞引起的电流减小需要适当的氧化还原物种浓度和初始电位,提供了有关zeta电位迁移效应和碰撞频率的信息。有限元模拟结果与实验结果的比较表明,微囊藻引起的阶梯电流减小不仅可能是由于电极表面的碰撞,也可能是由于电极表面周围区域(即活性区)的碰撞。这些结果表明,使用电化学方法进行实时分析的单个实体细胞检测具有多种应用。

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