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叉指电极用于商业伪二元生物柴油-柴油混合物的电特性分析。

Interdigitated Electrode for Electrical Characterization of Commercial Pseudo-Binary Biodiesel-Diesel Blends.

机构信息

Department of Electrical Engineering, Campus Bacanga, Federal University of Maranhão, São Luís 65080-805, Brazil.

Biological and Health Sciences Center, Campus of Bacanga, Federal University of Maranhão, São Luís 65080-805, Brazil.

出版信息

Sensors (Basel). 2021 Nov 1;21(21):7288. doi: 10.3390/s21217288.

Abstract

Non-standard diesel blends can be harmful to the environment and human health. In this context, a simple analytical method to estimate the biodiesel mixture ratio in diesel was developed based on impedance spectroscopy (IS) associated with interdigitated sensors. In this article, four different interdigitated sensors with varied comb spacing (G) were simulated using the COMSOL Multiphysics software. Based on finite element simulations, four interdigitated electrode architectures were manufactured and evaluated. The best geometry was chosen according to theoretical data simulations, and its interdigitated electrodes were manufactured for the compositional evaluation of pseudo-binary biodiesel-diesel mixtures. According to the X-ray powder diffraction technique, the deposition of the conductive layer (Au) over the surface of the dielectric substrate (SiO) did not alter its phase composition. In the analysis of AFM and SEM, it was possible to observe irregular edges on the electrodes, possibly related to the manufacturing process of the thin layers and mechanical stability. Another characteristic observed in the AFM images was the height of the step of the gold layer of the sensor. Several cross sections were obtained, and the mean step value was 225.71 ± 0.0032 nm. Although there were differences in the roughness, the whole sensor had nanometric roughness. Based on the finite element method simulation performed, it can be assumed that the geometric parameters more suitable for the manufacturing of the electrode are W = 20 µm, L = 1000 µm, G = 50 µm, and N = 40 digits. The electrical characterization performed by impedance spectroscopy showed that we could differentiate between biodiesel and diesel fuels and their pseudo-binary mixtures in the low-frequency region.

摘要

非标准柴油混合物可能对环境和人类健康有害。在此背景下,本文基于阻抗谱(IS)和叉指传感器,开发了一种简单的分析方法,用于估算柴油中的生物柴油混合比。本文使用 COMSOL Multiphysics 软件对具有不同梳齿间距(G)的四个不同叉指传感器进行了模拟。基于有限元模拟,制造并评估了四种叉指电极结构。根据理论数据模拟选择了最佳几何形状,并制造了其叉指电极,用于评估伪二元生物柴油-柴油混合物的组成。根据 X 射线粉末衍射技术,在介电基底(SiO)表面沉积导电层(Au)并未改变其相组成。在 AFM 和 SEM 的分析中,可以观察到电极上存在不规则边缘,这可能与薄膜的制造工艺和机械稳定性有关。在 AFM 图像中观察到的另一个特征是传感器金层的台阶高度。获得了几个横截面,平均台阶值为 225.71 ± 0.0032nm。尽管粗糙度存在差异,但整个传感器仍具有纳米级粗糙度。基于所进行的有限元法模拟,可以假设更适合制造电极的几何参数为 W = 20µm、L = 1000µm、G = 50µm 和 N = 40 位数字。通过阻抗谱进行的电特性分析表明,我们可以在低频区域区分生物柴油和柴油燃料及其伪二元混合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/089a/8588433/bc08c85d7c5e/sensors-21-07288-g001.jpg

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