Department of Micro- and Nanotechnology, Technical University of Denmark, DTU Nanotech, Kongens Lyngby, Denmark.
Anal Chem. 2012 Sep 18;84(18):7744-9. doi: 10.1021/ac301136x. Epub 2012 Sep 5.
Background current noise is often a significant limitation when using constant-potential amperometry for biosensor application such as amperometric recordings of transmitter release from single cells through exocytosis. In this paper, we fabricated thin-film electrodes of gold and conductive polymers and measured the current noise in physiological buffer solution for a wide range of different electrode areas. The noise measurements could be modeled by an analytical expression, representing the electrochemical cell as a resistor and capacitor in series. The studies revealed three domains; for electrodes with low capacitance, the amplifier noise dominated, for electrodes with large capacitances, the noise from the resistance of the electrochemical cell was dominant, while in the intermediate region, the current noise scaled with electrode capacitance. The experimental results and the model presented here can be used for choosing an electrode material and dimensions and when designing chip-based devices for low-noise current measurements.
背景电流噪声在恒电位安培法应用中是一个显著的限制因素,例如通过胞吐作用从单个细胞中安培记录递质释放的生物传感器应用。在本文中,我们制备了金和导电聚合物的薄膜电极,并在生理缓冲溶液中测量了不同电极面积的宽范围电流噪声。噪声测量可以通过代表电化学池为串联电阻和电容器的解析表达式来建模。研究揭示了三个领域;对于电容较低的电极,放大器噪声占主导地位,对于电容较大的电极,电化学池电阻的噪声占主导地位,而在中间区域,电流噪声与电极电容成比例。这里提出的实验结果和模型可用于选择电极材料和尺寸,以及在设计基于芯片的低噪声电流测量设备时使用。