Near-field spectroscopy has been extensively applied recently to analyze collective optical properties of materials at the nanoscale. However, vibrations of small molecules were only recognizable in close proximity to a metallic resonator. We show that encapsulation in boron nitride nanotubes (BNNT) enhances the near-field vibrational spectra of C$_{60}$ fullerene, reaching a sensitivity limit of a few hundred molecules. Furthermore, products of chemical reactions inside the tubes can be identified, so long as their vibrational signatures lie in the polariton gap of the BNNT.Comment: 7 pages, 4 figure
Optical absorption spectra have been calculated for a series of boron nitride fullerenelike cage str...
Vibrational strong coupling (VSC) promises ultrasensitive IR spectroscopy and modification of materi...
We have performed a near-edge x-ray absorption fine-structure (NEXAFS) investigation of multi-walled...
Nanotubes have been extensively utilized as nanocontainers for molecules and as nanoreactors for che...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
Graphene nanoribbons are prepared inside boron nitride nanotubes by liquid phase encapsulation and s...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
We present a theoretical study of the optical absorption spectrum of small boron-nitride and carbon ...
Recent advances in scanning near-field optical microscopy (SNOM) have led to rapid growth of the fie...
As science progresses at the nanoscopic level, it becomes more and more important to comprehend the ...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
A novel infrared (IR) pump-probe continuous wavelength (CW) technique based on scattering type near-...
We develop a theory of near-field Raman enhancement in one-dimensional systems, and report supportin...
Scattering type scanning near‐field optical microscopy (s‐SNOM) is an effective tool for the nanosca...
The armchair variety of single-wall carbon nanotubes (SWCNTs) is the only nanotube species that beha...
Optical absorption spectra have been calculated for a series of boron nitride fullerenelike cage str...
Vibrational strong coupling (VSC) promises ultrasensitive IR spectroscopy and modification of materi...
We have performed a near-edge x-ray absorption fine-structure (NEXAFS) investigation of multi-walled...
Nanotubes have been extensively utilized as nanocontainers for molecules and as nanoreactors for che...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
Graphene nanoribbons are prepared inside boron nitride nanotubes by liquid phase encapsulation and s...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
We present a theoretical study of the optical absorption spectrum of small boron-nitride and carbon ...
Recent advances in scanning near-field optical microscopy (SNOM) have led to rapid growth of the fie...
As science progresses at the nanoscopic level, it becomes more and more important to comprehend the ...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
A novel infrared (IR) pump-probe continuous wavelength (CW) technique based on scattering type near-...
We develop a theory of near-field Raman enhancement in one-dimensional systems, and report supportin...
Scattering type scanning near‐field optical microscopy (s‐SNOM) is an effective tool for the nanosca...
The armchair variety of single-wall carbon nanotubes (SWCNTs) is the only nanotube species that beha...
Optical absorption spectra have been calculated for a series of boron nitride fullerenelike cage str...
Vibrational strong coupling (VSC) promises ultrasensitive IR spectroscopy and modification of materi...
We have performed a near-edge x-ray absorption fine-structure (NEXAFS) investigation of multi-walled...