4.8 Article

Out-of-Plane Nanoscale Reorganization of Lipid Molecules and Nanoparticles Revealed by Plasmonic Spectroscopy

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 11, Issue 8, Pages 2875-2882

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpclett.0c00182

Keywords

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Funding

  1. EPSRC [EP/G060649/1, EP/L027151/1, EP/G037221/1, EP/P023266/1]
  2. EPSRC NanoDTC
  3. Trinity College, University of Cambridge
  4. Leverhulme Trust
  5. Isaac Newton Trust
  6. EPSRC [EP/P029426/1, EP/L027151/1, EP/P023266/1, EP/G060649/1] Funding Source: UKRI

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Lipid bilayers assembled on solid substrates have been extensively studied with single-molecule resolution as the constituent molecules diffuse in 2D; however, the out-of-plane motion is typically ignored. Here we present the subnanometer out-of-plane diffusion of nanoparticles attached to hybrid lipid bilayers (HBLs) assembled on metal surfaces. The nanoscale cavity formed between the Au nanoparticle and Au film provides strongly enhanced optical fields capable of locally probing HBLs assembled in the gaps. This allows us to spectroscopically resolve the nanoparticles assembled on bilayers, near edges, and in membrane defects, showing the strong influence of charged lipid rafts. Nanoparticles sitting on the edges of the HBL are observed to flip onto and off of the bilayer, with flip energies of similar to 10 meV showing how thermal energies dynamically modify lipid arrangements around a nanoparticle. We further resolve the movement of individual lipid molecules by doping the HBL with low concentrations of Texas Red (TxR) dye-labeled lipids.

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