Tan Chunjian, Wang Shaogang, Li Shizhen, Liu Xu, Wei Jia, Zhang Guoqi, Ye Huaiyu
Electronic Components, Technology and Materials, Delft University of Technology, 2628 CD Delft, The Netherlands.
Engineering Research Center of Integrated Circuits for Next-Generation Communications, Ministry of Education, School of Microelectronics, Southern University of Science and Technology, Shenzhen 518055, China.
Nanomaterials (Basel). 2022 Nov 3;12(21):3889. doi: 10.3390/nano12213889.
Owing to the outstanding physical properties of graphene, its biosensing applications implemented by the terahertz metasurface are widely concerned and studied. Here, we present a novel design of the graphene metasurface, which consists of an individual graphene ring and an H-shaped graphene structure. The graphene metasurface exhibits a dual-resonance response, whose resonance frequency strongly varies with the geometrical parameters of the proposed metasurface, the carrier density of graphene, and the analyte composition. The transparency window, including width and position, can be artificially controlled by adjusting the geometrical parameters or the Fermi energy. Furthermore, the sensing parameters of the graphene metasurface for cancerous and normal cells are investigated, focusing on two factors, namely cell quantity and position on the metasurface. The simulated results clearly show that the theoretical sensitivity, figure of merit, and quantity of the graphene metasurface for breast cells reach 1.21 THz/RIU, 2.75 RIU-1, and 2.43, respectively. Our findings may open up new avenues for promising applications in the diagnosis of cancers.
由于石墨烯具有出色的物理特性,其通过太赫兹超表面实现的生物传感应用受到广泛关注和研究。在此,我们提出了一种新型的石墨烯超表面设计,它由单个石墨烯环和一个H形石墨烯结构组成。该石墨烯超表面呈现出双共振响应,其共振频率会随着所提出的超表面的几何参数、石墨烯的载流子密度以及分析物组成而强烈变化。包括宽度和位置在内的透明窗口可以通过调整几何参数或费米能量来人为控制。此外,研究了石墨烯超表面对癌细胞和正常细胞的传感参数,重点关注两个因素,即细胞数量和在超表面上的位置。模拟结果清楚地表明,用于乳腺细胞的石墨烯超表面的理论灵敏度、品质因数和数量分别达到1.21太赫兹/折射率单位、2.75折射率单位-1和2.43。我们的研究结果可能为癌症诊断中的潜在应用开辟新途径。