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用于葡萄糖浓度检测的基于二维硫化镓的一维光子晶体生物传感器

2D Gallium Sulfide-Based 1D Photonic Crystal Biosensor for Glucose Concentration Detection.

作者信息

Abderrahmane Abdelkader, Senouci Khaled, Hachemi Belkacem, Ko Pil Ju

机构信息

Department of Electrical Engineering, Chosun University, 375, Seosuk-dong, Dong-gu, Gwangju 501-759, Republic of Korea.

Laboratoire de Structure, Elaboration et Application des Matériaux Moléculaires (SEA2M), Université Abdelhamid Ibn Badis Mostaganem, B.P. 227, Mostaganem 27000, Algeria.

出版信息

Materials (Basel). 2023 Jun 27;16(13):4621. doi: 10.3390/ma16134621.

Abstract

Unidimensional photonic crystal-based biosensors have gained much attention in the area of blood glucose measurement. In this paper, we propose two novel designs based on two-dimensional (2D) Van der Waals materials. The first 1D photonic crystal design consists of multilayers of 2D gallium sulfide and 2D muscovite mica [GaS/Mica]D[GaS/Mica], and the second design consists of multilayers of 2D gallium sulfide [GaS/G]D[GaS/G]. We conducted a numerical analysis using the transfer matrix method to investigate the properties of photonic crystals, both with and without defect layers, in order to assess their suitability for biosensing applications. The biosensors' performances were investigated as a function of glucose concentration, revealing a high sensitivity of 832 nm/RIU, a notable figure-of-merit of 1.46 × 10 RIU, a Q-factor exceeding 10, and a minimum limit of detection of 3.4 × 10 RIU. Finally, we modified the [GaS/G]D[GaS/G]structure in order to enhance the sensitivity nearly 5-fold. The proposed biosensors offer the advantage of being label-free, making them promising platforms for the sensitive and reliable detection of blood glucose levels.

摘要

基于一维光子晶体的生物传感器在血糖测量领域备受关注。在本文中,我们提出了两种基于二维(2D)范德华材料的新颖设计。第一种一维光子晶体设计由二维硫化镓和二维白云母的多层结构[GaS/云母]D[GaS/云母]组成,第二种设计由二维硫化镓的多层结构[GaS/G]D[GaS/G]组成。我们使用转移矩阵法进行了数值分析,以研究有无缺陷层时光子晶体的特性,从而评估它们在生物传感应用中的适用性。研究了生物传感器的性能随葡萄糖浓度的变化,结果显示其具有832 nm/RIU的高灵敏度、1.46×10 RIU的显著品质因数、超过10的Q因子以及3.4×10 RIU的最低检测限。最后,我们对[GaS/G]D[GaS/G]结构进行了改进,以使灵敏度提高近5倍。所提出的生物传感器具有无需标记的优势,使其成为灵敏可靠地检测血糖水平的有前景的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ab8/10342575/a92a8bd075a4/materials-16-04621-g001.jpg

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