AbstractPoly-Si is a widely used material for thermoelectric devices due to its CMOS compatibility. However, most of the studies focus on room temperature properties of this material. In this paper the authors present experimental results for a temperature range of -50oC to 300oC in which thermoelectric properties of heavily doped n/p-type poly-Si are measured and investigated, including electric resistivity, thermal conductivity and Seebeck coefficient. The experimental results shows that the figure of merit of the heavily doped poly-Si increases continuously, indicating better thermoelectric efficiency of the heavily doped poly-Si with higher temperature
Polycrystalline silicon sample was prepared by crushing, ball-milling and hot-pressing a single crys...
It is important to understand thermal transport behavior in materials for technological and fundamen...
Silicon is the most widely used functional material, as it is geo-abundant and atoxic. Unfortunately...
AbstractPoly-Si is a widely used material for thermoelectric devices due to its CMOS compatibility. ...
Silicon (Si) has received recent interest for thermoelectric (TE) applications. For all TE materials...
Research on silicon thermoelectric coolers lies at the intersection of semiconductor physics, nanosc...
Silicon offers many advantages as a next generation thermoelectric material, meeting modern demands ...
Porous silicon (Si) is a low thermal conductivity material, which has high potential for thermoelect...
U radu su prikazana i analizirana svojstva visokodopiranih filmova polikristalnog silicija s primarn...
Organic semiconductors (OSCs) are attractive for fabrication of thermoelectric devices with low cost...
The figure of merit of thermoelectric material is determined by electrical and thermal conductivitie...
The performance of thermoelectric (TE) materials is limited by the intrinsic coupling of the Seebeck...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Experimental values are given of the thermal conductivity and thermoelectric power of n-type silicon...
Block copolymer patterned holey silicon (HS) was successfully integrated into a microdevice for simu...
Polycrystalline silicon sample was prepared by crushing, ball-milling and hot-pressing a single crys...
It is important to understand thermal transport behavior in materials for technological and fundamen...
Silicon is the most widely used functional material, as it is geo-abundant and atoxic. Unfortunately...
AbstractPoly-Si is a widely used material for thermoelectric devices due to its CMOS compatibility. ...
Silicon (Si) has received recent interest for thermoelectric (TE) applications. For all TE materials...
Research on silicon thermoelectric coolers lies at the intersection of semiconductor physics, nanosc...
Silicon offers many advantages as a next generation thermoelectric material, meeting modern demands ...
Porous silicon (Si) is a low thermal conductivity material, which has high potential for thermoelect...
U radu su prikazana i analizirana svojstva visokodopiranih filmova polikristalnog silicija s primarn...
Organic semiconductors (OSCs) are attractive for fabrication of thermoelectric devices with low cost...
The figure of merit of thermoelectric material is determined by electrical and thermal conductivitie...
The performance of thermoelectric (TE) materials is limited by the intrinsic coupling of the Seebeck...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Experimental values are given of the thermal conductivity and thermoelectric power of n-type silicon...
Block copolymer patterned holey silicon (HS) was successfully integrated into a microdevice for simu...
Polycrystalline silicon sample was prepared by crushing, ball-milling and hot-pressing a single crys...
It is important to understand thermal transport behavior in materials for technological and fundamen...
Silicon is the most widely used functional material, as it is geo-abundant and atoxic. Unfortunately...