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Simulations of Interdigitated Electrode Interactions with Gold Nanoparticles for Impedance-Based Biosensing Applications

机译:基于金阻抗的生物传感应用中指状电极与金纳米粒子相互作用的模拟

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摘要

In this paper, we describe a point-of-care biosensor design. The uniqueness of our design is in its capability for detecting a wide variety of target biomolecules and the simplicity of nanoparticle enhanced electrical detection. The electrical properties of interdigitated electrodes (IDEs) and the mechanism for gold nanoparticle-enhanced impedance-based biosensor systems based on these electrodes are simulated using COMSOL Multiphysics software. Understanding these properties and how they can be affected is vital in designing effective biosensor devices. Simulations were used to show electrical screening develop over time for IDEs in a salt solution, as well as the electric field between individual digits of electrodes. Using these simulations, it was observed that gold nanoparticles bound closely to IDEs can lower the electric field magnitude between the digits of the electrode. The simulations are also shown to be a useful design tool in optimizing sensor function. Various different conditions, such as electrode dimensions and background ion concentrations, are shown to have a significant impact on the simulations.
机译:在本文中,我们描述了即时医疗生物传感器设计。我们设计的独特之处在于其能够检测多种目标生物分子的能力以及纳米粒子增强电检测的简便性。使用COMSOL Multiphysics软件模拟了叉指电极(IDE)的电性能以及基于这些电极的金纳米颗粒增强的基于阻抗的生物传感器系统的机理。了解这些特性以及如何影响这些特性对于设计有效的生物传感器设备至关重要。通过仿真显示了盐溶液中IDE随时间的电屏蔽发展以及各个手指电极之间的电场。使用这些模拟,可以观察到与IDE紧密结合的金纳米颗粒可以降低电极手指之间的电场强度。该仿真还被证明是优化传感器功能的有用设计工具。各种不同的条件,例如电极尺寸和背景离子浓度,都显示对模拟有重大影响。

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