4.8 Article

Highly Reproducible Near-Field Optical Imaging with Sub-20-nm Resolution Based on Template-Stripped Gold Pyramids

期刊

ACS NANO
卷 6, 期 10, 页码 9168-9174

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn303496g

关键词

near-field scanning optical microscopy; plasmonics; template stripping; tip-enhanced Raman scattering; single-molecule fluorescence; super-resolution imaging; optical antenna

资金

  1. Department of Energy [DE-FG02-01ER15204]
  2. National Science Foundation [CBET-0930074]
  3. Office of Naval Research (ONR) Young Investigator Award [N00014-11-1-0645]
  4. National Science Foundation (NSF) CAREER Award [DBI 1054191]
  5. WCU Program [R31-10032]
  6. Ministry of Education, Science Technology
  7. National Research Foundation of Korea
  8. NSF through the National Nanotechnology Infrastructure Network
  9. Direct For Biological Sciences
  10. Div Of Biological Infrastructure [1054191] Funding Source: National Science Foundation
  11. Directorate For Engineering
  12. Div Of Chem, Bioeng, Env, & Transp Sys [0930074] Funding Source: National Science Foundation

向作者/读者索取更多资源

With a template-stripping fabrication technique, we demonstrate the mass fabrication of high-quality, uniform, ulhasharp (10 nm) metallic probes suitable for single-molecule fluorescence imaging, tipenhanced Raman spectroscopy (TERS), and other near-field imaging techniques. We achieve reprodudble single-molecule imaging with sub-20-nm spatial resolution and an enhancement in the detected fluorescence signal of up to 200. Similar results are obtained for TERS imaging of carbon nanotubes. We show that the large apex angle (70.5 degrees) of our pyramidal tip is well suited to scatter the near-field optical signal into the far-field, leading to larger emission enhancement and hen:e to a larger quantum yield. Each gold or silver pyramidal probe is used on-demand, one at a time, and the unused tips can be stored for extended times without degradation or contamination. The high yield (> 95%), reproducibility, durability, and massively parallel fabrication (15 million identical probes over a wafer) of the probes hold promise for reliable optical sensing and detection and for cement nj nearfield optical imaging and spectroscopy as a routine characterization technique.

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