Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructured silicon materials, such as silicon nanowires (SiNWs), show great potential as they show low thermal conductivities due to efficient phonon scattering but similar electrical conductivities to bulk silicon. Silicon nanoparticles (SiNPs) are easier to synthesize and show a greater number of surface defects, which suggests that more efficient phonon scattering can be achieved, but these materials also show low electrical conductivity due to defects within the materials unless pressed at high temperatures (1100°C). Conjugated capping layers show the potential to bridge these defects, giving higher conductivity without the need for this process...
Thermoelectrics enable solid-state conversion of heat to electricity by the Seebeck effect, but must...
International audienceThermoelectricity struggles with the lack of cheap, abundant, and environmenta...
The potentialities of silicon as a starting material for electronic devices are well known and large...
Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructu...
Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructu...
Silicon is a promising alternative to current thermoelectric materials (Bi2Te3). Silicon nanoparticl...
Silicon is a promising alternative to current thermoelectric materials (Bi2Te3). Silicon nanoparticl...
Silicon nanoparticles (SiNPs) functionalized with conjugated molecules promise a potential pathway t...
The increasing demand for fossil fuels, and the need to reduce greenhouse gases, requires ‘clean’ en...
The figure of merit of thermoelectric material is determined by electrical and thermal conductivitie...
Arrays of freestanding Si nanowires have been fabricated by electron beam lithography, low-damage d...
The design and fabrication of nanostructured materials to control both thermal and electrical proper...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
The motivation for, and performance of, silicon nanostructures including porous silicon in thermoele...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Thermoelectrics enable solid-state conversion of heat to electricity by the Seebeck effect, but must...
International audienceThermoelectricity struggles with the lack of cheap, abundant, and environmenta...
The potentialities of silicon as a starting material for electronic devices are well known and large...
Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructu...
Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructu...
Silicon is a promising alternative to current thermoelectric materials (Bi2Te3). Silicon nanoparticl...
Silicon is a promising alternative to current thermoelectric materials (Bi2Te3). Silicon nanoparticl...
Silicon nanoparticles (SiNPs) functionalized with conjugated molecules promise a potential pathway t...
The increasing demand for fossil fuels, and the need to reduce greenhouse gases, requires ‘clean’ en...
The figure of merit of thermoelectric material is determined by electrical and thermal conductivitie...
Arrays of freestanding Si nanowires have been fabricated by electron beam lithography, low-damage d...
The design and fabrication of nanostructured materials to control both thermal and electrical proper...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
The motivation for, and performance of, silicon nanostructures including porous silicon in thermoele...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Thermoelectrics enable solid-state conversion of heat to electricity by the Seebeck effect, but must...
International audienceThermoelectricity struggles with the lack of cheap, abundant, and environmenta...
The potentialities of silicon as a starting material for electronic devices are well known and large...