2026

Capacitive field-effect biosensors loaded with intact plant virus particles: modelling and experimental data.

Analytical and bioanalytical chemistry Welden M, Poghossian A, Wege C, Schöning MJ
阅读原文 PDF DOI PubMed

组成图示

示意图生成中

传感器类型

检测对象

检测原理

检测灵敏度

效应效果

传感器的构成

中文摘要

英文摘要

Plant viruses are considered one of the main contributors to crop losses in the agricultural industry and thus induce high economic costs worldwide. The best strategy to slow down the spread of plant virus infections and prevent crop failures is to make an early and reliable diagnosis and provide prompt treatment. Electrolyte-insulator-semiconductor capacitors (EISCAP) represent an attractive transducer architecture for label-free electrostatic detection of virus particles by their intrinsic charge. In this work, a capacitive model of an EISCAP sensor loaded with negatively charged tobacco mosaic virus (TMV) particles is presented. In the developed model, the adsorbed TMV particles are assumed as local gates with dimensions in the nano- to sub-micrometer range. The impact of TMV surface coverage on the sensor characteristics of SiO2-gate EISCAPs was studied theoretically and experimentally. The observed EISCAP signal correlates well with the coverage of loaded TMV particles evaluated from scanning electron microscopy images of the SiO2-gate surface.

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