Figure of Merit Analysis of LRSPR Sensor using Graphene in NIR Regime

Narendra Pal, J. Maurya, Y. Prajapati
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Abstract

In this work, LRSPR sensor for detection of macro biomolecules in near infrared range is presented. Using a buffer layer of dielectric with low refractive index between the prism and metal, a long-range surface plasmon resonance (LRSPR) biosensor that exhibits large detection accuracy as well as high figure of merit is proposed. Two-dimensional (2D) material graphene is used to attach biomolecules through carbon-carbon pi-stacking forces. First, the theoretical simulations for optimizing the thicknesses of dielectric buffer layer (Cytop) and gold (Au) metal layer has been carried out. Then, performance parameters DA and FOM were analyzed. The highest FOM of 847.4 RIU−1 is accomplished for the proposed LRSPR sensor with the use of 1500nm thickness of Cytop. We believe that the proposed LRSPR sensor with high DA and FOM could provide potential applications in medical and biosensing field.
在近红外波段使用石墨烯的LRSPR传感器的优点分析图
本文介绍了一种用于近红外大分子检测的LRSPR传感器。利用低折射率介质作为缓冲层,在棱镜和金属之间设计了一种具有高质量因数和高检测精度的远程表面等离子体共振(LRSPR)生物传感器。二维(2D)材料石墨烯被用于通过碳-碳pi堆叠力附着生物分子。首先,对介质缓冲层(Cytop)和金(Au)金属层厚度的优化进行了理论模拟。然后对性能参数DA和FOM进行了分析。在使用厚度为1500nm的Cytop时,LRSPR传感器的FOM达到了847.4 RIU−1。我们认为该传感器具有较高的DA和FOM,在医学和生物传感领域具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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