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A Generalized Potentiostat Adaptor for Multiplexed Electroanalysis

机译:用于多路复用电分析的广义电位仪适配器

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Electrochemical measurements over an array of electrodes may be accomplished with one of three potentiostat architectures: a single-channel device which averages the signal from a number of interconnected electrodes, a multichannel device with dedicated circuits for each electrode, or a single-channel device with a multiplexer interface to isolate the signal from specific electrodes. Of these three architectures, the use of a multiplexer interface is best suited to facilitate measurements over individual electrodes without the need for large numbers of dedicated potentiostat channels. We present a versatile strategy for the development of flexible printed circuit (FPC) electrode arrays with accompanying multiplexing hardware to interface with single-channel potentiostats. The FPC array was fabricated with 78 individually addressable 0.3 mm diameter gold working electrodes and characterized using optical and scanning electron microscopy, energy dispersive spectroscopy, profilometry, impedance spectroscopy, and cyclic voltammetry to investigate the morphology, elemental composition, height profile, impedance characteristics, and electrochemical response, respectively. Interfacing the FPC array via a simple connector with three 32-channel ADG731 multiplexers permitted electrochemical measurements using single-channel commercial potentiostats. Voltammetric experiments were conducted to demonstrate the reliability, stability, and reproducibility of the FPC array and interfacing hardware. The combination of these devices represents an accessible hardware platform with robust, functionalizable electrodes, a simple connection interface with commercial potentiostats, and a low cost through the use of off-the-shelf components. Our reported strategy holds great promise to facilitate multiplexed electroanalysis in next-generation sensors to increase statistical sample size and multianalyte detection capabilities.
机译:电极阵列上的电化学测量可以使用三种恒电位仪结构中的一种来完成:对多个互连电极的信号进行平均的单通道设备、具有每个电极专用电路的多通道设备,或具有多路复用器接口的单通道设备,以将信号与特定电极隔离。在这三种结构中,多路复用器接口的使用最适合在单个电极上进行测量,而无需大量专用恒电位仪通道。我们提出了一种开发柔性印刷电路(FPC)电极阵列的通用策略,该阵列带有与单通道恒电位仪接口的多路复用硬件。FPC阵列由78个可单独寻址的0.3 mm直径的金工作电极制成,并使用光学和扫描电子显微镜、能量色散光谱、轮廓术、阻抗谱和循环伏安法对其进行了表征,以研究其形貌、元素组成、高度分布、阻抗特性和电化学响应,分别地通过一个简单的连接器与三个32通道ADG731多路复用器连接FPC阵列,允许使用单通道商用恒电位仪进行电化学测量。进行了伏安实验,以证明FPC阵列和接口硬件的可靠性、稳定性和再现性。这些设备的组合代表了一个可访问的硬件平台,具有坚固、可功能化的电极、与商用恒电位仪的简单连接接口,以及通过使用现成组件实现的低成本。我们报告的策略有望促进下一代传感器中的多路电分析,以增加统计样本量和多分析物检测能力。

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