Thermoelectric (TE) power generation presents a promising and attractive way to convert high temperature waste heat into electricity. However in many situations, such as in industrial waste heat recovery, the market is looking for affordable solutions, while the search for efficient and stable materials is still ongoing. The relatively high TE system costs, are partially due to material costs such as for Te in BiTe, or PbTe, but also due to the relatively small scale leg- and module manufacturing process. Especially in the leg manufacturing, there are often a number of steps involved such as ingot crystallization, ball milling, hot pressing or plasma sintering and leg sawing. With the availability of the ribbon-growth-on-substrate (RGS) tec...
Valoriser l'énergie perdue sous forme de chaleur par les moteurs thermiques en électricité via desgé...
Silicides have attracted considerable attention for use in thermoelectric generators due mainly to l...
International audienceAmong Additive Manufacturing (AM) methods, Laser Powder Bed Fusion (L-PBF), al...
Large scale deployment of thermoelectric devices requires that the thermoelectric materials have sta...
Abstract Thermoelectric modules can be used in waste heat harvesting, sensing, and cooling applicati...
International audienceSilicide-based materials are among the most promising candidates for a mass ma...
Large scale deployment of thermoelectric devices requires that the thermoelectric materials have st...
The limited thermoelectric performance of p-type Higher Manganese Silicides (HMS) in terms of their ...
Generating electricity from waste heat by means of thermoelectric generators may represent a very in...
International audienceComplex geometry legs were advantageous to obtain higher thermoelectric potent...
Matching the increase in energy demand while also reducing the greenhouse gas emission is a worldwid...
International audienceHigher manganese silicide (HMS) is considered as a promising thermoelectric ma...
Valoriser l'énergie perdue sous forme de chaleur par les moteurs thermiques en électricité via desgé...
Silicides have attracted considerable attention for use in thermoelectric generators due mainly to l...
International audienceAmong Additive Manufacturing (AM) methods, Laser Powder Bed Fusion (L-PBF), al...
Large scale deployment of thermoelectric devices requires that the thermoelectric materials have sta...
Abstract Thermoelectric modules can be used in waste heat harvesting, sensing, and cooling applicati...
International audienceSilicide-based materials are among the most promising candidates for a mass ma...
Large scale deployment of thermoelectric devices requires that the thermoelectric materials have st...
The limited thermoelectric performance of p-type Higher Manganese Silicides (HMS) in terms of their ...
Generating electricity from waste heat by means of thermoelectric generators may represent a very in...
International audienceComplex geometry legs were advantageous to obtain higher thermoelectric potent...
Matching the increase in energy demand while also reducing the greenhouse gas emission is a worldwid...
International audienceHigher manganese silicide (HMS) is considered as a promising thermoelectric ma...
Valoriser l'énergie perdue sous forme de chaleur par les moteurs thermiques en électricité via desgé...
Silicides have attracted considerable attention for use in thermoelectric generators due mainly to l...
International audienceAmong Additive Manufacturing (AM) methods, Laser Powder Bed Fusion (L-PBF), al...