Lin Zichen, Yang Haorui, Jin Gui, Zhu Ying, Tang Bin
School of Microelectronics, Changzhou University, Changzhou 213164, China.
Department of Electronic Information and Electronic Engineering, Xiangnan University, Chenzhou 423000, China.
Nanomaterials (Basel). 2025 Mar 28;15(7):509. doi: 10.3390/nano15070509.
Borophene, as a novel two-dimensional (2D) material, has garnered significant interest due to its exceptional optoelectronic properties, including anisotropic plasmonic response high carrier mobility, etc. In this work, we theoretically propose a borophene-based anisotropic metamaterial perfect absorber using the finite-difference time-domain (FDTD) method. The research results show that the proposed metamaterial exhibits triple-band perfect electromagnetic absorption characteristics when the polarization direction of electromagnetic wave is along the zigzag direction of borophene, and the resonant absorption wavelengths can be adjusted by varying the carrier mobility of borophene. Furthermore, as an application of the proposed perfect absorber, we investigate the refractive sensing properties of the borophene-based metamaterial. When the carrier density of borophene is 4.0 × 10 m, the maximum refractive index sensitivity of the designed absorber is up to 867 nm/RIU, with a figure of merit of 11.71 RIU, which has promising applications in the field of biochemical sensing and special environmental detection.
硼烯作为一种新型二维材料,因其优异的光电特性,包括各向异性等离子体响应、高载流子迁移率等,而备受关注。在这项工作中,我们使用时域有限差分(FDTD)方法从理论上提出了一种基于硼烯的各向异性超材料完美吸收体。研究结果表明,当电磁波的极化方向沿硼烯的锯齿方向时,所提出的超材料呈现出三波段完美电磁吸收特性,并且共振吸收波长可通过改变硼烯的载流子迁移率来调节。此外,作为所提出的完美吸收体的一项应用,我们研究了基于硼烯的超材料的折射传感特性。当硼烯的载流子密度为4.0×10 m时,所设计吸收体的最大折射率灵敏度高达867 nm/RIU,品质因数为11.71 RIU,这在生化传感和特殊环境检测领域具有广阔的应用前景。