Graphene-based crack lithography for high-throughput fabrication of terahertz metamaterials
Autor: | Minah Seo, Sang-Hun Lee, Hak-Joo Lee, Kwang-Seop Kim, Do Van Lam, Sejeong Won, Hyeon-Don Kim, Seung-Mo Lee, Dai-Sik Kim, Hyun-June Jung, Jae-Hyun Kim, Dasom Kim |
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Rok vydání: | 2020 |
Předmět: |
Fabrication
Nanostructure Materials science business.industry Terahertz radiation Graphene Metamaterial 02 engineering and technology General Chemistry 010402 general chemistry 021001 nanoscience & nanotechnology 01 natural sciences Focused ion beam 0104 chemical sciences law.invention Nanolithography law Optoelectronics General Materials Science 0210 nano-technology business Lithography |
Zdroj: | Carbon. 158:505-512 |
ISSN: | 0008-6223 |
Popis: | Terahertz (THz) nanoantennas have significant potential for versatile applications in THz spectroscopy because of their capability for strong electromagnetic field localization. Electron-beam lithography or focused ion beam machining is typically employed to fabricate nanoantenna structures. These nanolithography methods present limitations in the widespread utilization of THz nanoantennas because of their high cost and low productivity. In this work, we proposed graphene-based crack lithography as a high throughput fabrication method for nanoantenna structures. A double-layer graphene interface was introduced to enable independent control of the nanoantenna dimensions and provide graphene-based nanoantenna structures. We analyzed the underlying mechanism of graphene-based cracking and developed an analytical model governing the geometric parameters of the fabricated nanostructures. As a vital application of the fabricated nanoantenna structures, we demonstrated the highly sensitive detection of d -Glucose molecules. Graphene-based crack lithography can provide a cost-effective method for generating nanoantenna structures with the desired characteristics and can accelerate the development of practical applications of electromagnetic metamaterials. |
Databáze: | OpenAIRE |
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