Glass nanoimprinted plasmonic nanostructure for high power laser stable surface-enhanced Raman spectroscopy substrate

  • Badshah, Mohsin Ali; 
  • Kim, Jun; 
  • Yeom, Jeongwoo; 
  • Abbas, Naseem; 
  • Haq, Muhammad Refatul; 
  • ... Kim, Seok-min; 
  • 외 2명
Citations

WEB OF SCIENCE

15
Citations

SCOPUS

18

초록

A high-power laser stable surface-enhanced Raman spectroscopy (SERS) substrate which can provide a SERS enhancement factor greater than 1012 was fabricated as an Ag metalized nanoimprinted glass nanohole array. A vitreous carbon (VC) nanopost stamp with a height of 82 nm, a pitch of 390 nm, and a nanopost diameter of 187 nm, was fabricated by carbonization of a replicated furan precursor from a silicon master pattern, and a glass nanohole pattern was imprinted using the VC nanostamp at a temperature of 690 °C and compression pressure of 0.6 MPa. An electromagnetic field analysis using the rigorous coupled-wave analysis was conducted to optimize the Ag layer to examine the SERS enhancement factor from glass SERS (GL-SERS) substrate. For comparison, a polymer SERS (PL-SERS) substrate was also fabricated by the deposition of the Ag layer on a UV nanoimprinted polymer nanohole pattern using the same VC nanostamp. A SERS enhancement factor (EF) of 107 was obtained from both GL- and PL-SERS substrates at a laser irradiation power of 100 mW. However, a SERS-EF of 1012 was achieved using the GL-SERS substrate with a laser irradiation power of 200 mW, however, the PL-SERS substrate was unable to withstand this irradiance. © 2020 Elsevier B.V.

키워드

Glass nanostructure; Localized surface plasmon resonance; Nanoimprinting; Plasmonic nanostructures; sureface enhnaced Raman spectroscopy; Carbonization; Electromagnetic fields; Glass; Glassy carbon; High power lasers; Irradiation; Light transmission; Plasmonics; Raman spectroscopy; Silver; Silver metallography; Compression pressures; Electromagnetic field analysis; Furan precursors; Plasmonic nanostructures; Rigorous coupled wave analysis; Sers enhancement factors; Stable surfaces; Vitreous carbon; Substrates
제목
Glass nanoimprinted plasmonic nanostructure for high power laser stable surface-enhanced Raman spectroscopy substrate
저자
Badshah, Mohsin Ali; Kim, Jun; Yeom, Jeongwoo; Abbas, Naseem; Haq, Muhammad Refatul; Kim, Youngkyu; Lu, Xun; Kim, Seok-min
DOI
10.1016/j.apsusc.2020.148587
발행일
2021-03
유형
Article
저널명
Applied Surface Science
권
542