Reproducible confinement of light on the nanoscale is essential for the ability to observe and control chemical reactions at the single-molecule level. Here we reliably form millions of identical nanocavities and show that the light can be further focused down to the subnanometer scale via the creation of picocavities, single-adatom protrusions with angstrom-level resolution. For the first time, we stabilize and analyze these cavities at room temperatures through high-speed surface-enhanced Raman spectroscopy on specifically selected molecular components, collecting and analyzing more than 2 million spectra. Data obtained on these picocavities allows us to deduce structural information on the nanoscale, showing that thiol binding to gold de...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
Understanding single-molecule chemical dynamics of surface ligands is of critical importance to reve...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
Funder: Leverhulme TrustFunder: Trinity College, University of CambridgeFunder: Isaac Newton TrustTr...
Plasmonic nanocavities, such as a nanometre scale gap between a gold nanoparticle and gold mirror (N...
Metal/organic-molecule interactions underpin many key chemistries but occur on sub-nm scales where n...
Metal/organic-molecule interactions underpin many key chemistries but occur on sub-nm scales where n...
Surface-enhanced vibrational spectroscopy has emerged as a powerful tool to probe the (photo)chemist...
Resumen del trabajo presentado a la International Conference on Surface-Enhanced Raman Spectroscopy ...
The molecule-metal interface is of paramount importance for many devices and processes, and directly...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
Understanding single-molecule chemical dynamics of surface ligands is of critical importance to reve...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Reproducible confinement of light on the nanoscale is essential for the ability to observe and contr...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light...
Funder: Leverhulme TrustFunder: Trinity College, University of CambridgeFunder: Isaac Newton TrustTr...
Plasmonic nanocavities, such as a nanometre scale gap between a gold nanoparticle and gold mirror (N...
Metal/organic-molecule interactions underpin many key chemistries but occur on sub-nm scales where n...
Metal/organic-molecule interactions underpin many key chemistries but occur on sub-nm scales where n...
Surface-enhanced vibrational spectroscopy has emerged as a powerful tool to probe the (photo)chemist...
Resumen del trabajo presentado a la International Conference on Surface-Enhanced Raman Spectroscopy ...
The molecule-metal interface is of paramount importance for many devices and processes, and directly...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
Understanding single-molecule chemical dynamics of surface ligands is of critical importance to reve...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...