The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated using doping techniques that impact grain growth in different ways during the doping process. In particular, As- and P-doped nanowires were fabricated using a process flow which enables the manufacturing of surface micromachined nanowires contacted by Al/Si pads in a four-terminal configuration for thermal conductivity measurement. Also, dedicated structures for the measurement of the Seebeck coefficient and electrical resistivity were prepared. In this way, the thermoelectric figure of merit of the nanowires could be evaluated. The As-doped nanowires were heavily doped by thermal doping from spin-on-dopant sources, whereas predeposition from POC...
Nanostructuring has opened new ways to increase the thermoelectric performance of a host of material...
Silicon nanowires (NWs) are promising thermoelectric materials as they offer large reductions in the...
Thermoelectric materials have gained a considerable amount of attention as a practical power source ...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
MasterWe report the influence of dimension or doping concentration on thermal conductivity of silico...
The potentialities of silicon as a starting material for electronic devices are well known and large...
The thermoelectric properties of nanostructured silicon have attracted significant attention in rece...
Arrays of freestanding Si nanowires have been fabricated by electron beam lithography, low-damage d...
textThe objective of this work is to develop methods to investigate the thermoelectric (TE) transpor...
The increasing demand for fossil fuels, and the need to reduce greenhouse gases, requires ‘clean’ en...
Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructu...
We report indirect measurements of thermal conductivity in silicon nanostructures. We have exploite...
The focus of this chapter is on the experimental results of the thermal conductivity of silicon nano...
Thermal conductivity measurement is always a challenge and difficult task for thermoelectric charact...
The motivation for, and performance of, silicon nanostructures including porous silicon in thermoele...
Nanostructuring has opened new ways to increase the thermoelectric performance of a host of material...
Silicon nanowires (NWs) are promising thermoelectric materials as they offer large reductions in the...
Thermoelectric materials have gained a considerable amount of attention as a practical power source ...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
MasterWe report the influence of dimension or doping concentration on thermal conductivity of silico...
The potentialities of silicon as a starting material for electronic devices are well known and large...
The thermoelectric properties of nanostructured silicon have attracted significant attention in rece...
Arrays of freestanding Si nanowires have been fabricated by electron beam lithography, low-damage d...
textThe objective of this work is to develop methods to investigate the thermoelectric (TE) transpor...
The increasing demand for fossil fuels, and the need to reduce greenhouse gases, requires ‘clean’ en...
Silicon is a highly attractive material for the fabrication of thermoelectric materials. Nanostructu...
We report indirect measurements of thermal conductivity in silicon nanostructures. We have exploite...
The focus of this chapter is on the experimental results of the thermal conductivity of silicon nano...
Thermal conductivity measurement is always a challenge and difficult task for thermoelectric charact...
The motivation for, and performance of, silicon nanostructures including porous silicon in thermoele...
Nanostructuring has opened new ways to increase the thermoelectric performance of a host of material...
Silicon nanowires (NWs) are promising thermoelectric materials as they offer large reductions in the...
Thermoelectric materials have gained a considerable amount of attention as a practical power source ...