Quantum dot based-thermometry, in combination with double beam confocal microscopy and infrared thermal imaging, has been used to investigate the heating efficiency of multi-walled carbon nanotubes (MWCNTs) under optical excitation within the first (808 nm) and second (1090 nm) biological windows as well as in the spectral region separating them (980 nm). It has been found that for the three excitation wavelengths the heating efficiency of MWCNTs (10 nm in diameter and 1.5 μm in length) is close to 50%. Despite this “flat” heating efficiency, we have found that the excitation wavelength is, indeed, critical during in vivo experiments due to the spectral dependence of both tissue absorption and scattering coefficients. It has been concluded ...
Laser‐induced thermal effects in optically trapped microspheres and single cells are investigated by...
Laser-induced thermal effects in optically trapped microspheres and single cells are investigated by...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
Quantum dot based-thermometry, in combination with double beam confocal microscopy and infrared ther...
The coupling efficiency of carbon nanotubes with near infrared laser radiation at 940nm wavelength w...
Carbon nanotubes have many potential applications in life sciences and engineering as they have very...
Quantum dot based thermometry, in combination with double beam confocal microscopy, was used to inve...
Quantum dot based thermometry, in combination with double beam confocal microscopy, was used to inve...
We present a theoretical model of laser heating carbon nanotubes to determine the temperature profil...
Luminescent single-walled carbon nanotubes (SWCNTs) are unique nanoemitters that allow near-infrared...
Nanoparticles, including multiwalled carbon nanotubes (MWNTs), strongly absorb near-infrared (nIR) r...
We investigate laser heating of double wall carbon nanotubes deposited on surfaces and immerged in l...
Pyrometry via blackbody radiation is used to measure temperature of systems throughout physics. The...
Single-walled carbon nanotubes (SWCNTs) exhibit intrinsic fluorescence and strong optical absorption...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
Laser‐induced thermal effects in optically trapped microspheres and single cells are investigated by...
Laser-induced thermal effects in optically trapped microspheres and single cells are investigated by...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
Quantum dot based-thermometry, in combination with double beam confocal microscopy and infrared ther...
The coupling efficiency of carbon nanotubes with near infrared laser radiation at 940nm wavelength w...
Carbon nanotubes have many potential applications in life sciences and engineering as they have very...
Quantum dot based thermometry, in combination with double beam confocal microscopy, was used to inve...
Quantum dot based thermometry, in combination with double beam confocal microscopy, was used to inve...
We present a theoretical model of laser heating carbon nanotubes to determine the temperature profil...
Luminescent single-walled carbon nanotubes (SWCNTs) are unique nanoemitters that allow near-infrared...
Nanoparticles, including multiwalled carbon nanotubes (MWNTs), strongly absorb near-infrared (nIR) r...
We investigate laser heating of double wall carbon nanotubes deposited on surfaces and immerged in l...
Pyrometry via blackbody radiation is used to measure temperature of systems throughout physics. The...
Single-walled carbon nanotubes (SWCNTs) exhibit intrinsic fluorescence and strong optical absorption...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...
Laser‐induced thermal effects in optically trapped microspheres and single cells are investigated by...
Laser-induced thermal effects in optically trapped microspheres and single cells are investigated by...
The light-to-heat conversion efficiency of gold nanorods (GNRs) with surface plasmon resonances in t...