This work presents a flexible thick-film Bismuth Tellurium/Antimony Tellurium (BiTe/SbTe) thermoelectric generator (TEG) with reduced material resistivity fabricated by screen printing technology. Cold isostatic pressing (CIP) was introduced to lower the resistivity of the printed thermoelectric materials. The Seebeck coefficient (alpha) and the resistivity (rho) of printed materials were measured as a function of applied pressure. A prototype TEG with 8 thermocouples was fabricated on flexible polyimide substrate. The dimension of a single printed element was 20 mm × 2 mm × 78.4 µm. The coiled-up prototype produced a voltage of 36.4 mV and a maximum power of 40.3 nW from a temperature gradient of 20 °C
A technique for IC-compatible fabrication of a planar (in-plane) thermoelectric (TE) power generator...
We have fabricated a printed flexible thermoelectric generator using composite of Bi2Te3 and PEDOT:P...
Part 3: Additive ManufacturingInternational audienceWaste heat in the temperature range up to 100 °C...
This work presents a flexible thick-film Bismuth Tellurium/Antimony Tellurium (BiTe/SbTe) thermoelec...
This data is used in the paper “Flexible screen printed thermoelectric generator with enhanced...
This paper presents the optimization of a bismuth tellurium (Bi1.8Te3.2)-antimony tellurium (Sb2Te3)...
This paper reports the fabrication and testing of Bismuth Tellurium (Bi2Te3) – Antimony Tellurium (S...
This thesis describes the approaches of fabricating and testing thermoelectric generators (TEG) usin...
The thermoelectric generator (TEG) shows great promise for energy harvesting and waste heat recovery...
This thesis investigates how to large-scale manufacture flexible thin-film electronics using high-th...
This paper reports the fabrication and testing of copper (Cu) - nickel (Ni) and bismuth (Bi) - antim...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric generators (TEG) directly convert heat energy into electrical energy. The impediments...
Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy har...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
A technique for IC-compatible fabrication of a planar (in-plane) thermoelectric (TE) power generator...
We have fabricated a printed flexible thermoelectric generator using composite of Bi2Te3 and PEDOT:P...
Part 3: Additive ManufacturingInternational audienceWaste heat in the temperature range up to 100 °C...
This work presents a flexible thick-film Bismuth Tellurium/Antimony Tellurium (BiTe/SbTe) thermoelec...
This data is used in the paper “Flexible screen printed thermoelectric generator with enhanced...
This paper presents the optimization of a bismuth tellurium (Bi1.8Te3.2)-antimony tellurium (Sb2Te3)...
This paper reports the fabrication and testing of Bismuth Tellurium (Bi2Te3) – Antimony Tellurium (S...
This thesis describes the approaches of fabricating and testing thermoelectric generators (TEG) usin...
The thermoelectric generator (TEG) shows great promise for energy harvesting and waste heat recovery...
This thesis investigates how to large-scale manufacture flexible thin-film electronics using high-th...
This paper reports the fabrication and testing of copper (Cu) - nickel (Ni) and bismuth (Bi) - antim...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric generators (TEG) directly convert heat energy into electrical energy. The impediments...
Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy har...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
A technique for IC-compatible fabrication of a planar (in-plane) thermoelectric (TE) power generator...
We have fabricated a printed flexible thermoelectric generator using composite of Bi2Te3 and PEDOT:P...
Part 3: Additive ManufacturingInternational audienceWaste heat in the temperature range up to 100 °C...