We present results on the photothermal (PT) and heat conductive properties of nanogranular silicon (Si) films synthesized by evaporation of colloidal droplets (drop-casting) of 100 ± 50 nm-sized crystalline Si nanoparticles (NP) deposited on glass substrates. Simulations of the absorbed light intensity and photo-induced temperature distribution across the Si NP films were carried out by using the Finite difference time domain (FDTD) and finite element mesh (FEM) modeling and the obtained data were compared with the local temperatures measured by micro-Raman spectroscopy and then was used for determining the heat conductivities k in the films of various thicknesses. The cubic-to-hexagonal phase transition in Si NP films caused by laser-induc...
Abstract The structural features and thermal conductivity of silicon nanoparticles of diameter 2-12 ...
Si nanocrystals in silica are attractive for photonic applications. Various optical functions can be...
<p>The operating temperature of energy conversion and electronic devices affects their efficiency an...
We present results on the photothermal (PT) and heat conductive properties of nanogranular silicon (...
This paper demonstrates that free-standing silicon nanocrystals (Si NCs) have significantly differen...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
In the present study, the effect of liquid filling of the nanopore network on thermal transport in p...
In recent years, nanoporous Si films have been widely studied for thermoelectric applications due to...
International audienceThe photoacoustic method with piezoelectric detection for the simultaneous eva...
In recent years, nanoporous Si films have been intensively studied for their potential applications ...
In this work, spreading of temperature profiles and influence of a temperature on forming silicon na...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystalline silico...
ABSTRACT: This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystall...
We study nanograin size confinement effects, and the effect of the increase of local temperature on ...
Abstract The structural features and thermal conductivity of silicon nanoparticles of diameter 2-12 ...
Si nanocrystals in silica are attractive for photonic applications. Various optical functions can be...
<p>The operating temperature of energy conversion and electronic devices affects their efficiency an...
We present results on the photothermal (PT) and heat conductive properties of nanogranular silicon (...
This paper demonstrates that free-standing silicon nanocrystals (Si NCs) have significantly differen...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
In the present study, the effect of liquid filling of the nanopore network on thermal transport in p...
In recent years, nanoporous Si films have been widely studied for thermoelectric applications due to...
International audienceThe photoacoustic method with piezoelectric detection for the simultaneous eva...
In recent years, nanoporous Si films have been intensively studied for their potential applications ...
In this work, spreading of temperature profiles and influence of a temperature on forming silicon na...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystalline silico...
ABSTRACT: This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystall...
We study nanograin size confinement effects, and the effect of the increase of local temperature on ...
Abstract The structural features and thermal conductivity of silicon nanoparticles of diameter 2-12 ...
Si nanocrystals in silica are attractive for photonic applications. Various optical functions can be...
<p>The operating temperature of energy conversion and electronic devices affects their efficiency an...