A large thermoelectric power factor in heavily boron-doped p-type nanograined Si with grain sizes similar to 30 nm and grain boundary regions of similar to 2 nm is reported. The reported power factor is similar to 5 times higher than in bulk Si. It originates from the surprising observation that for a specific range of carrier concentrations, the electrical conductivity and Seebeck coefficient increase simultaneously. The two essential ingredients for this observation are nanocrystallinity and extremely high boron doping levels. This experimental finding is interpreted within a theoretical model that considers both electron and phonon transport within the semiclassical Boltzmann approach. It is shown that transport takes place through two p...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Silicon, one of the most abundant elements on earth, is a promising candidate for thermoelectric app...
The thermoelectric properties of nanostructured silicon have attracted significant attention in rece...
A large thermoelectric power factor in heavily boron-doped p-type nanograined Si with grain sizes si...
In this work, we describe a novel idea that allows for high thermoelectric power factors in two-phas...
In previous publications it was shown that the precipitation of silicon boride around grain boundari...
Hole-containing silicon has been regarded as a viable candidate thermoelectric material because of i...
Engineering materials to include nanoscale porosity or other nanoscale structures has become a well-...
Heavily boron-doped polycrystalline silicon has been reported to be characterized by somewhat unexpe...
Engineering materials to include nanoscale porosity or other nanoscale structures has become a well-...
Point defect scattering via the formation of solid solutions to reduce the lattice thermal conductiv...
Silicon has several advantages when compared to other thermoelectric materials, but until recently i...
Thermoelectric power sources have consistently demonstrated their extraordinary reliability and long...
Silicon has several advantages when compared to other thermoelectric materials, but until recently i...
In the quest for more efficient thermoelectric material able to convert thermal to electrical energy...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Silicon, one of the most abundant elements on earth, is a promising candidate for thermoelectric app...
The thermoelectric properties of nanostructured silicon have attracted significant attention in rece...
A large thermoelectric power factor in heavily boron-doped p-type nanograined Si with grain sizes si...
In this work, we describe a novel idea that allows for high thermoelectric power factors in two-phas...
In previous publications it was shown that the precipitation of silicon boride around grain boundari...
Hole-containing silicon has been regarded as a viable candidate thermoelectric material because of i...
Engineering materials to include nanoscale porosity or other nanoscale structures has become a well-...
Heavily boron-doped polycrystalline silicon has been reported to be characterized by somewhat unexpe...
Engineering materials to include nanoscale porosity or other nanoscale structures has become a well-...
Point defect scattering via the formation of solid solutions to reduce the lattice thermal conductiv...
Silicon has several advantages when compared to other thermoelectric materials, but until recently i...
Thermoelectric power sources have consistently demonstrated their extraordinary reliability and long...
Silicon has several advantages when compared to other thermoelectric materials, but until recently i...
In the quest for more efficient thermoelectric material able to convert thermal to electrical energy...
The thermoelectric properties of doped polycrystalline silicon nanowires have been investigated usin...
Silicon, one of the most abundant elements on earth, is a promising candidate for thermoelectric app...
The thermoelectric properties of nanostructured silicon have attracted significant attention in rece...