用于检测假单胞菌并提高灵敏度的表面-质子和钛酸材料辅助传感器结构

Vasimalla Yesudasu;Rupam Srivastava;Sarika Pal;M S Mani Rajan;Yogendra Kumar Prajapati
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引用次数: 0

摘要

鉴于假单胞菌对环境、植物、农业食品和人类健康的重大影响,出于多种原因,检测假单胞菌至关重要。本文介绍了基于表面等离子体共振技术的复杂传感器在检测假单胞菌方面的性能改进。所提出的传感器结构利用了三种细菌附着物,即甲苯、尼古丁和聚(甲基丙烯酸三氟乙酯)作为亲和层。克雷奇曼传感器的设计包括银、硅、钛酸材料、黑磷(BP)、亲和层和传感介质。钛酸盐是一种铁电物质,在传感器和电子设备中的应用具有许多优点。所提出的结构提供的最大灵敏度为 430$^\circ /\text{RIU}$,品质因数为 88.84 $\text{RI}{{\mathrm{U}}^{-1}}$,检测精度值为 2.3。结果表明,与文献中报道的传感器相比,其性能有了大幅提升。
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Surface-Plasmon and Titanate Material-Assisted Sensor Structure for Pseudomonas Bacteria Detection With Increased Sensitivity
The detection of pseudomonas bacteria is crucial for multiple reasons, given its substantial impact on the environment, plants, agrifoods, and human health. This article presents the improvement in the performance of a sophisticated surface plasmon resonance technique-based sensor for detecting pseudomonas bacteria. The proposed sensor structure utilizes three bacterial attachments, namely, toluene, nicotine, and poly (trifluoroethyl methacrylate), as affinity layers. The Kretschmann sensor design includes silver, silicon, titanate material, black phosphorus (BP), an affinity layer, and a sensing medium. Titanate is a ferroelectric substance that presents numerous benefits when employed in sensors and electronic devices. The proposed structure has a maximum provided sensitivity of 430 $^\circ /\text{RIU}$ , a quality factor of 88.84 $\text{RI}{{\mathrm{U}}^{ - 1}}$ , and a detection accuracy value of 2.3. The results indicate a substantial enhancement in comparison to the reported sensor in the literature.
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2024 Index IEEE Transactions on AgriFood Electronics Vol. 2 Table of Contents Front Cover IEEE Circuits and Systems Society Information IEEE Circuits and Systems Society Information
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