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Exploring the response of a resistive soot sensor to AC electric excitation

机译:探索电阻烟灰传感器对交流电激励的响应

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The resistive particulate matter sensor is a simple device that transduces the presence of soot through impedance change across inter-digital electrodes (IDEs). We investigate the information provided by impedance spectroscopy over the frequency range from 100 Hz to 10 kHz for two purposes. The first is to investigate the opportunities for an improved sensor response to particulate matter (PM), based on the additional information provided by the measurement of both the in-phase (resistive) and out-of-phase (capacitive) components of the change in impedance over this frequency range as compared to DC resistance measurement only. Secondly, the origin of the capacitive response of the device is investigated from the perspective that soot on the device is in the form of bendable dendrites that grow in three dimensions. An IDE structure with the housing acting as an additional suspended electrode for introducing a controllable vertical electric field component has been used for this purpose. The formation of dipoles, due to bending of the charged dendrites, is found to be the source of the capacitive response. Simulation of electrostatic soot deposition reinforces dendritic self-assembly mechanisms, driven by charged particle trajectories along electric field lines. Optical microscopy confirms that dendrites growing out of the substrate plane are sensitive to electric and flow forces, bending when force balances are appropriate. We also apply impedance spectroscopy under varying electric field strengths, showing that capacitive response is only observed when conditions are conducive to dendrite bending in response to the applied AC electric fields.
机译:电阻颗粒物质传感器是一种简单的装置,其通过跨越数字电极(IDE)的阻抗变化来转换烟灰的存在。我们调查阻抗光谱通过100Hz至10kHz的阻抗光谱提供的信息,有两个目的。首先是研究改进的传感器响应对颗粒物质(PM)的机会,基于通过测量变化的同相(电阻)和相位异(电容)组分的测量提供的附加信息与直流电阻测量相比,在该频率范围内的阻抗。其次,从透视图中研究了装置的电容响应的来源,该烟灰在装置上的烟灰是可弯曲的树枝状物的形式,其在三维中生长。具有作为用于引入可控垂直电场分量的附加悬浮电极的壳体的IDE结构已经用于此目的。由于弯曲的带电枝形弯曲而形成偶极子,发现是电容响应的源。静电烟灰沉积的仿真加强了树突式自组装机构,由电场线的带电粒子轨迹驱动。光学显微镜证实,在基板平面上生长的枝条对电力和流量敏感,当力余平适当时弯曲。我们还在不同的电场强度下施加阻抗光谱,显示电容响应仅在响应于所应用的交流电场弯曲的条件弯曲时观察到。

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