4.8 Article

Enantiomer-Selective Molecular Sensing Using Racemic Nanoplasmonic Arrays

期刊

NANO LETTERS
卷 18, 期 10, 页码 6279-6285

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.8b02433

关键词

Biosensing; chiral sensing; plasmonics; optical chirality; enantiomers

资金

  1. European Community's Seventh Framework Program under grant QnanoMECA [64790]
  2. Fundacio Privada Cellex
  3. CERCA programme
  4. Spanish Ministry of Economy and Competitiveness, through the Severo Ochoa Programme for Centres of Excellence in RD [SEV-2015-0522, FIS2016-80293-R]
  5. Swedish Research Council [637-2014-6894]
  6. B. Braun Surgical S.A.

向作者/读者索取更多资源

Building blocks of life show well-defined chiral symmetry which has a direct influence on their properties and role in Nature. Chiral molecules are typically characterized by optical techniques such as circular dichroism (CD) where they exhibit signatures in the ultraviolet frequency region. Plasmonic nanostructures have the potential to enhance the sensitivity of chiral detection and translate the molecular chirality to the visible spectral range. Despite recent progress, to date, it remains unclear which properties plasmonic sensors should exhibit to maximize this effect and apply it to reliable enantiomer discrimination. Here, we bring further insight into this complex problem and present a chiral plasmonic sensor composed of a racemic mixture of gammadions with no intrinsic CD, but high optical chirality and electric field enhancements in the near-fields. Owing to its unique set of properties, this configuration enables us to directly differentiate phenylalanine enantiomers in the visible frequency range.

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