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Improved method for estimating adlayer thickness and bulk RI change for gold nanocrescent sensors

机译:估计金纳米新月形传感器的附加层厚度和整体RI变化的改进方法

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摘要

This paper presents a novel method employing the maximum likelihood estimation (MLE) technique alongside a nonlinear sensor response model to improve and extract more quantitative sensing results for localized surface plasmon resonance biosensors. The nonlinear response model treats the sensor response as a nonlinear function of the biomolecular adlayer thickness. This method makes use of the multiple resonance characteristic of nanocrescent structures in order to estimate the adlayer thickness and bulk refractive index (RI) change. Nanoimprint lithography is used here to fabricate the nanostructures. The finite element method (FEM) is used to model the nanocrescents and numerically validate the nonlinear-MLE method. Comparing to the established linear model, the proposed nonlinear-MLE method achieves 75% improvement in the limit of detection based on the estimated adlayer thickness and improves the bulk RI resolution by two orders of magnitude.
机译:本文提出了一种采用最大似然估计(MLE)技术以及非线性传感器响应模型的新型方法,以改善和提取局部表面等离子体共振生物传感器的定量检测结果。非线性响应模型将传感器响应视为生物分子吸收层厚度的非线性函数。该方法利用了纳米新月形结构的多重共振特性,以估计吸收层的厚度和整体折射率(RI)的变化。在此使用纳米压印光刻来制造纳米结构。有限元方法(FEM)用于对纳米新月形体进行建模,并在数值上验证非线性MLE方法。与已建立的线性模型相比,所提出的非线性-MLE方法基于估计的外加层厚度将检测限提高了75%,并将整体RI分辨率提高了两个数量级。

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