Optical Sensing by Metamaterials and Metasurfaces: From Physics to Biomolecule Detection

超材料 材料科学 等离子体子 电介质 光电子学 纳米技术 光谱学 拉曼散射 生物分子 光学 拉曼光谱 物理 量子力学
作者
Sayed Ali Khan,Noor Zamin Khan,Yinong Xie,Muhammad Tahir Abbas,Muhammad Rauf,Ikhtisham Mehmood,Marcin Runowski,Simeon Agathopoulos,Jinfeng Zhu
出处
期刊:Advanced Optical Materials [Wiley]
卷期号:10 (18) 被引量:54
标识
DOI:10.1002/adom.202200500
摘要

Abstract Metasurfaces are planar or 2D forms of metamaterials made up of arrays of antennas with a subwavelength thickness. They have been rapidly developed in the recent years due to their ability to manipulate light–matter interaction in both linear and non‐linear regimes at the nanoscale. Various metasurfaces display remarkable optical features, such as acute resonance, significant near‐field enhancement, and suitable capacity to support electric and magnetic modes, on account of the strong light–matter interaction and the low optical loss. Due to these important properties, they can be used in several advanced optoelectronic applications, like surface‐enhanced spectroscopy, photocatalysis, and sensing. This review reports on the recent progress of metamaterials and metasurfaces in molecular optical sensors. The principles that govern plasmonic and dielectric metasurfaces along with their features are outlined, supported by numerous examples. Then, the factors that result in a high Q‐factor are presented in order to show that metamaterials and metasurfaces can be used for label‐free sensing in a variety of detection mechanisms, including surface‐enhanced spectroscopy, refractometric sensing, and surface‐enhanced thermal emission spectroscopy via infrared absorption and Raman scattering, as well as chiral sensing. Finally, the challenges for future development are outlined.
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